Publications of M. Khodachenko


A list of publications authored or co-authored by M. Khodachenko, derived from the SAO/NASA Astrophysics Data System (ADS). The number in brackets after each title indicates the number of citations that the paper has received.

Orcid ID: 0000-0001-7954-5131

List of publications ordered by citations
Number of papers: 136 (refereed: 128)
No. of citations: 5968
First author papers: 23 (refereed: 21)

2024

  1. 3D aeronomy of two mini-neptunes in the HD 63433 system and their in-transit absorption in Ly α and metastable He I lines [0]
    Berezutsky, A. G., Shaikhislamov, I. F., Rumenskikh, M. S., Miroshnichenko, I. B., Khodachenko, M. L., Golubovskii, M. P. & Sharipov, S. S., MNRAS, 533, 374
  2. Probing the melting dynamics in a phase change Rayleigh–Bénard system under low gravity conditions [2]
    Kansara, Keyur, Singh, Shobhana, Dwivedi, Navin Kumar & Khodachenko, Maxim L., International Journal of Heat and Mass Transfer, 234, 126073
  3. Investigating combined effects of varying gravity and heat flux direction on the melting dynamics of phase change material in space [2]
    Kansara, Keyur, Singh, Shobhana, Dwivedi, Navin Kumar & Khodachenko, Maxim L., Acta Astronautica, 220, 427

2023

  1. Mysterious non-detection of He I (23S) transit absorption of GJ 436b [7]
    Rumenskikh, M. S., Khodachenko, M. L., Shaikhislamov, I. F., Miroshnichenko, I. B., Berezutsky, A. G., Shepelin, A. V. & Dwivedi, N. K., MNRAS, 526, 4120

2022

  1. On the transit spectroscopy features of warm Neptunes in the TOI-421 system, revealed with their 3D aeronomy simulations [3]
    Berezutsky, A. G., Shaikhislamov, I. F., Rumenskikh, M. S., Khodachenko, M. L., Lammer, H. & Miroshnichenko, I. B., MNRAS, 515, 706
  2. The GAPS Programme at TNG. XXXII. The revealing non-detection of metastable He I in the atmosphere of the hot Jupiter WASP-80b [33]
    Fossati, L., Guilluy, G., Shaikhislamov, I. F., Carleo, I., Borsa, F., Bonomo, A. S., Giacobbe, P., Rainer, M., Cecchi-Pestellini, C., Khodachenko, M. L., Efimov, M. A., Rumenskikh, M. S., Miroshnichenko, I. B., Berezutsky, A. G., Nascimbeni, V., Brogi, M., Lanza, A. F., Mancini, L., Affer, L., Benatti, S., Biazzo, K., Bignamini, A., Carosati, D., Claudi, R., Cosentino, R., Covino, E., Desidera, S., Fiorenzano, A., Harutyunyan, A., Maggio, A., Malavolta, L., Maldonado, J., Micela, G., Molinari, E., Pagano, I., Pedani, M., Piotto, G., Poretti, E., Scandariato, G., Sozzetti, A. & Stoev, H., A&A, 658, A136
  3. Global 3D Simulation of the Upper Atmosphere of HD189733b and Absorption in Metastable He I and Lyα Lines [23]
    Rumenskikh, M. S., Shaikhislamov, I. F., Khodachenko, M. L., Lammer, H., Miroshnichenko, I. B., Berezutsky, A. G. & Fossati, L., ApJ, 927, 238
  4. Categorization model of moving small-scale intensity enhancements in solar active regions [1]
    Shergelashvili, B. M., Philishvili, E., Buitendag, S., Poedts, S. & Khodachenko, M., A&A, 662, A30

2021

  1. Empirically revealed properties of Rieger-type cycles of stellar activity [4]
    Arkhypov, O. V. & Khodachenko, M. L., A&A, 651, A28
  2. Revealing peculiar exoplanetary shadows from transit light curves [5]
    Arkhypov, O. V., Khodachenko, M. L. & Hanslmeier, A., A&A, 646, A136
  3. Eigenspectra of solar active region long-period oscillations [2]
    Dumbadze, G., Shergelashvili, B. M., Poedts, S., Zaqarashvili, T. V., Khodachenko, M. & De Causmaecker, P., A&A, 653, A39
  4. The impact of intrinsic magnetic field on the absorption signatures of elements probing the upper atmosphere of HD209458b [32]
    Khodachenko, M. L., Shaikhislamov, I. F., Lammer, H., Miroshnichenko, I. B., Rumenskikh, M. S., Berezutsky, A. G. & Fossati, L., MNRAS, 507, 3626
  5. Simulation of 10 830 Å absorption with a 3D hydrodynamic model reveals the solar He abundance in upper atmosphere of WASP-107b [18]
    Khodachenko, M. L., Shaikhislamov, I. F., Fossati, L., Lammer, H., Rumenskikh, M. S., Berezutsky, A. G., Miroshnichenko, I. B. & Efimof, M. A., MNRAS, 503, L23
  6. Case study on the identification and classification of small-scale flow patterns in flaring active region [2]
    Philishvili, E., Shergelashvili, B. M., Buitendag, S., Raes, J., Poedts, S. & Khodachenko, M. L., A&A, 645, A52
  7. Transient particle acceleration by a dawn-dusk electric field in a current sheet [0]
    Sasunov, Yu. L., Khodachenko, M. L., Kubyshkin, I. V., Dwivedi, N., Alexeev, I. I., Belenkaya, E. S., Malova, H. V. & Kulminskaya, N., Physics of Plasmas, 28, 042902
  8. The Atmospheric Wind of Hot Exoplanets and its Manifestations in Observations: from Energy Estimates to 3D MHD Models [1]
    Shaikhislamov, I. F., Khodachenko, M. L. & Berezutskiy, A. G., Astronomy Reports, 65, 8
  9. Global 3D hydrodynamic modelling of absorption in Ly α and He 10830 A lines at transits of GJ3470b [31]
    Shaikhislamov, I. F., Khodachenko, M. L., Lammer, H., Berezutsky, A. G., Miroshnichenko, I. B. & Rumenskikh, M. S., MNRAS, 500, 1404

2020

  1. Variability of transit light curves of Kepler objects of interest [2]
    Arkhypov, O. V., Khodachenko, M. L. & Hanslmeier, A., A&A, 638, A143
  2. A Hydrodynamic Modelling of Atmospheric Escape and Absorption Line of WASP-12b [0]
    Dwivedi, N. K., Khodachenko, M. L., Shaikhislamov, I. F., Berezutsky, A. G., Miroshnichenko, I. B., Fossati, L., Lammer, H., Sasunov, Y., Kislyakova, K. G., Johnstone, C. P. & Güdel, M., Origins: From the Protosun to the First Steps of Life (Editors: Elmegreen, Bruce G., Tóth, L. Viktor & Güdel, Manuel), IAU Symposium, 345, p. 301
  3. Evolution of the Earth's Polar Outflow From Mid-Archean to Present [15]
    Kislyakova, K. G., Johnstone, C. P., Scherf, M., Holmström, M., Alexeev, I. I., Lammer, H., Khodachenko, M. L. & Güdel, M., Journal of Geophysical Research (Space Physics), 125, e27837
  4. Hydrogen Dominated Atmospheres on Terrestrial Mass Planets: Evidence, Origin and Evolution [46]
    Owen, J. E., Shaikhislamov, I. F., Lammer, H., Fossati, L. & Khodachenko, M. L., Space Science Reviews, 216, 129
  5. Three-dimensional modelling of absorption by various species for hot Jupiter HD 209458b [33]
    Shaikhislamov, I. F., Khodachenko, M. L., Lammer, H., Berezutsky, A. G., Miroshnichenko, I. B. & Rumenskikh, M. S., MNRAS, 491, 3435
  6. Three-dimensional hydrodynamic simulations of the upper atmosphere of π Men c: Comparison with Lyα transit observations [23]
    Shaikhislamov, I. F., Fossati, L., Khodachenko, M. L., Lammer, H., García Muñoz, A., Youngblood, A., Dwivedi, N. K. & Rumenskikh, M. S., A&A, 639, A109
  7. A new class of discontinuous solar wind solutions [4]
    Shergelashvili, Bidzina M., Melnik, Velentin N., Dididze, Grigol, Fichtner, Horst, Brenn, Günter, Poedts, Stefaan, Foysi, Holger, Khodachenko, Maxim L. & Zaqarashvili, Teimuraz V., MNRAS, 496, 1023

2019

  1. Dusty phenomena in the vicinity of giant exoplanets [4]
    Arkhypov, O. V., Khodachenko, M. L. & Hanslmeier, A., A&A, 631, A152
  2. Interaction of the Expanding Atmosphere with the Stellar Wind around Gliese 436b [5]
    Berezutsky, A. G., Shaikhislamov, I. F., Miroshnichenko, I. B., Rumenskikh, M. S. & Khodachenko, M. L., Solar System Research, 53, 138
  3. Comparative analysis of solar radio bursts before and during CME propagation [3]
    Dididze, G., Shergelashvili, B. M., Melnik, V. N., Dorovskyy, V. V., Brazhenko, A. I., Poedts, S., Zaqarashvili, T. V. & Khodachenko, M., A&A, 625, A63
  4. Implication of kinetic Alfvén waves to magnetic field turbulence spectra: Earth's magnetosheath [9]
    Dwivedi, N. K., Kumar, S., Kovacs, P., Yordanova, E., Echim, M., Sharma, R. P., Khodachenko, M. L. & Sasunov, Y., Astrophysics and Space Science, 364, 101
  5. Modelling atmospheric escape and Mg II near-ultraviolet absorption of the highly irradiated hot Jupiter WASP-12b [19]
    Dwivedi, N. K., Khodachenko, M. L., Shaikhislamov, I. F., Fossati, L., Lammer, H., Sasunov, Y., Berezutskiy, A. G., Miroshnichenko, I. B., Kislyakova, K. G., Johnstone, C. P. & Güdel, M., MNRAS, 487, 4208
  6. Extreme hydrodynamic losses of Earth-like atmospheres in the habitable zones of very active stars [62]
    Johnstone, C. P., Khodachenko, M. L., Lüftinger, T., Kislyakova, K. G., Lammer, H. & Güdel, M., A&A, 624, L10
  7. Space weathering on the Moon: Farside-nearside solar wind precipitation asymmetry [27]
    Kallio, E., Dyadechkin, S., Wurz, P. & Khodachenko, M., Planetary and Space Science, 166, 9
  8. Global 3D Hydrodynamic Modeling of In-transit Lyα Absorption of GJ 436b [58]
    Khodachenko, M. L., Shaikhislamov, I. F., Lammer, H., Berezutsky, A. G., Miroshnichenko, I. B., Rumenskikh, M. S., Kislyakova, K. G. & Dwivedi, N. K., ApJ, 885, 67
  9. Transit Lyman-α signatures of terrestrial planets in the habitable zones of M dwarfs [22]
    Kislyakova, K. G., Holmström, M., Odert, P., Lammer, H., Erkaev, N. V., Khodachenko, M. L., Shaikhislamov, I. F., Dorfi, E. & Güdel, M., A&A, 623, A131

2018

  1. Calculation of the Initial Magnetic Field for Mercury's Magnetosphere Hybrid Model [2]
    Alexeev, Igor, Parunakian, David, Dyadechkin, Sergey, Belenkaya, Elena, Khodachenko, Maxim, Kallio, Esa & Alho, Markku, Cosmic Research, 56, 108
  2. Timescales of starspot variability in slow rotators [2]
    Arkhypov, O. V., Khodachenko, M. L., Güdel, M., Johnstone, C., Lüftinger, T. & Lammer, H., A&A, 613, A31
  3. Starspot variability as an X-ray radiation proxy [4]
    Arkhypov, Oleksiy V., Khodachenko, Maxim L., Lammer, Helmut, Güdel, Manuel, Lüftinger, Teresa & Johnstone, Colin P., MNRAS, 476, 1224
  4. Time-scales of stellar rotational variability and starspot diagnostics [9]
    Arkhypov, Oleksiy V., Khodachenko, Maxim L., Lammer, Helmut, Güdel, Manuel, Lüftinger, Teresa & Johnstone, Colin P., MNRAS, 473, L84
  5. Evidence for Precursors of the Coronal Hole Jets in Solar Bright Points [9]
    Bagashvili, Salome R., Shergelashvili, Bidzina M., Japaridze, Darejan R., Kukhianidze, Vasil, Poedts, Stefaan, Zaqarashvili, Teimuraz V., Khodachenko, Maxim L. & De Causmaecker, Patrick, ApJ, 855, L21
  6. Partially Ionized Plasmas in Astrophysics [131]
    Ballester, José Luis, Alexeev, Igor, Collados, Manuel, Downes, Turlough, Pfaff, Robert F., Gilbert, Holly, Khodachenko, Maxim, Khomenko, Elena, Shaikhislamov, Ildar F., Soler, Roberto, Vázquez-Semadeni, Enrique & Zaqarashvili, Teimuraz, Space Science Reviews, 214, 58
  7. Science data visualization in planetary and heliospheric contexts with 3DView [20]
    Génot, V., Beigbeder, L., Popescu, D., Dufourg, N., Gangloff, M., Bouchemit, M., Caussarieu, S., Toniutti, J. -P., Durand, J., Modolo, R., André, N., Cecconi, B., Jacquey, C., Pitout, F., Rouillard, A., Pinto, R., Erard, S., Jourdane, N., Leclercq, L., Hess, S., Khodachenko, M., Al-Ubaidi, T., Scherf, M. & Budnik, E., Planetary and Space Science, 150, 111
  8. The LatHyS database for planetary plasma environment investigations: Overview and a case study of data/model comparisons [25]
    Modolo, R., Hess, S., Génot, V., Leclercq, L., Leblanc, F., Chaufray, J. -Y., Weill, P., Gangloff, M., Fedorov, A., Budnik, E., Bouchemit, M., Steckiewicz, M., André, N., Beigbeder, L., Popescu, D., Toniutti, J. -P., Al-Ubaidi, T., Khodachenko, M., Brain, D., Curry, S., Jakosky, B. & Holmström, M., Planetary and Space Science, 150, 13
  9. Self-consistent description of the tangential-discontinuity-type current sheet, using the particle trajectory method and angular variables [1]
    Sasunov, Yu. L., Khodachenko, M. L., Alexeev, I. I., Belenkaya, E. S., Gubchenko, V. M., Dwivedi, N. & Hanslmeier, A., Physics of Plasmas, 25, 092110
  10. 3D Aeronomy modelling of close-in exoplanets [42]
    Shaikhislamov, I. F., Khodachenko, M. L., Lammer, H., Berezutsky, A. G., Miroshnichenko, I. B. & Rumenskikh, M. S., MNRAS, 481, 5315
  11. Modeling of Absorption by Heavy Minor Species for the Hot Jupiter HD 209458b [18]
    Shaikhislamov, I. F., Khodachenko, M. L., Lammer, H., Fossati, L., Dwivedi, N., Güdel, M., Kislyakova, K. G., Johnstone, C. P., Berezutsky, A. G., Miroshnichenko, I. B., Posukh, V. G., Erkaev, N. V. & Ivanov, V. A., ApJ, 866, 47

2017

  1. Statistical properties of coronal hole rotation rates: Are they linked to the solar interior? [28]
    Bagashvili, S. R., Shergelashvili, B. M., Japaridze, D. R., Chargeishvili, B. B., Kosovichev, A. G., Kukhianidze, V., Ramishvili, G., Zaqarashvili, T. V., Poedts, S., Khodachenko, M. L. & De Causmaecker, P., A&A, 603, A134
  2. Long-period oscillations of active region patterns: least-squares mapping on second-order curves [6]
    Dumbadze, G., Shergelashvili, B. M., Kukhianidze, V., Ramishvili, G., Zaqarashvili, T. V., Khodachenko, M., Gurgenashvili, E., Poedts, S. & De Causmaecker, P., A&A, 597, A93
  3. Effect of stellar wind induced magnetic fields on planetary obstacles of non-magnetized hot Jupiters [27]
    Erkaev, N. V., Odert, P., Lammer, H., Kislyakova, K. G., Fossati, L., Mezentsev, A. V., Johnstone, C. P., Kubyshkina, D. I., Shaikhislamov, I. F. & Khodachenko, M. L., MNRAS, 470, 4330
  4. Lyα Absorption at Transits of HD 209458b: A Comparative Study of Various Mechanisms Under Different Conditions [46]
    Khodachenko, M. L., Shaikhislamov, I. F., Lammer, H., Kislyakova, K. G., Fossati, L., Johnstone, C. P., Arkhypov, O. V., Berezutsky, A. G., Miroshnichenko, I. B. & Posukh, V. G., ApJ, 847, 126
  5. Magma oceans and enhanced volcanism on TRAPPIST-1 planets due to induction heating [70]
    Kislyakova, K. G., Noack, L., Johnstone, C. P., Zaitsev, V. V., Fossati, L., Lammer, H., Khodachenko, M. L., Odert, P. & Güdel, M., Nature Astronomy, 1, 878
  6. Simulation of Mercury's magnetosheath with a combined hybrid-paraboloid model [3]
    Parunakian, David, Dyadechkin, Sergey, Alexeev, Igor, Belenkaya, Elena, Khodachenko, Maxim, Kallio, Esa & Alho, Markku, Journal of Geophysical Research (Space Physics), 122, 8310
  7. Quasi-oscillatory dynamics observed in ascending phase of the flare on March 6, 2012 [2]
    Philishvili, E., Shergelashvili, B. M., Zaqarashvili, T. V., Kukhianidze, V., Ramishvili, G., Khodachenko, M., Poedts, S. & De Causmaecker, P., A&A, 600, A67
  8. The influence of kinetic effect on the MHD scalings of a thin current sheet [2]
    Sasunov, Yu. L., Khodachenko, M. L., Alexeev, I. I., Belenkaya, E. S., Mingalev, O. V. & Melnik, M. N., Journal of Geophysical Research (Space Physics), 122, 493
  9. How expanded ionospheres of Hot Jupiters can prevent escape of radio emission generated by the cyclotron maser instability [50]
    Weber, C., Lammer, H., Shaikhislamov, I. F., Chadney, J. M., Khodachenko, M. L., Grießmeier, J. -M., Rucker, H. O., Vocks, C., Macher, W., Odert, P. & Kislyakova, K. G., MNRAS, 469, 3505

2016

  1. Deep Mixing in Stellar Variability: Improved Method, Statistics, and Applications [6]
    Arkhypov, Oleksiy V., Khodachenko, Maxim L., Lammer, Helmut, Güdel, Manuel, Lüftinger, Theresa & Johnstone, Colin P., ApJ, 826, 35
  2. EUV-driven mass-loss of protoplanetary cores with hydrogen-dominated atmospheres: the influences of ionization and orbital distance [64]
    Erkaev, N. V., Lammer, H., Odert, P., Kislyakova, K. G., Johnstone, C. P., Güdel, M. & Khodachenko, M. L., MNRAS, 460, 1300
  3. Two Regimes of Interaction of a Hot Jupiter’s Escaping Atmosphere with the Stellar Wind and Generation of Energized Atomic Hydrogen Corona [55]
    Shaikhislamov, I. F., Khodachenko, M. L., Lammer, H., Kislyakova, K. G., Fossati, L., Johnstone, C. P., Prokopov, P. A., Berezutsky, A. G., Zakharov, Yu. P. & Posukh, V. G., ApJ, 832, 173

2015

  1. Signs of deep mixing in starspot variability [8]
    Arkhypov, O. V., Khodachenko, M. L., Güdel, M., Johnstone, C., Lüftinger, T. & Lammer, H., A&A, 576, A67
  2. Short-period Stellar Activity Cycles with Kepler Photometry [18]
    Arkhypov, Oleksiy V., Khodachenko, Maxim L., Lammer, Helmut, Güdel, Manuel, Lüftinger, Theresa & Johnstone, Colin P., ApJ, 807, 109
  3. Atmosphere Expansion and Mass Loss of Close-orbit Giant Exoplanets Heated by Stellar XUV. II. Effects of Planetary Magnetic Field; Structuring of Inner Magnetosphere [100]
    Khodachenko, M. L., Shaikhislamov, I. F., Lammer, H. & Prokopov, P. A., ApJ, 813, 50
  4. A statistical survey of reconnection exhausts in the solar wind based on the Riemannian decay of current sheets [3]
    Sasunov, Yu. L., Semenov, V. S., Heyn, M. F., Erkaev, N. V., Kubyshkin, I. V., Slivka, K. Yu., Korovinskiy, D. B. & Khodachenko, M. L., Journal of Geophysical Research (Space Physics), 120, 8194
  5. Investigation of scaling properties of a thin current sheet by means of particle trajectories study [6]
    Sasunov, Yu. L., Khodachenko, M. L., Alexeev, I. I., Belenkaya, E. S., Semenov, V. S., Kubyshkin, I. V. & Mingalev, O. V., Journal of Geophysical Research (Space Physics), 120, 1633
  6. The energy-based scaling of a thin current sheet: Case study [2]
    Sasunov, Yu. L., Khodachenko, M. L., Alexeev, I. I., Belenkaya, E. S., Gordeev, E. I. & Kubyshkin, I. V., Geophysical Research Letters, 42, 9609

2014

  1. Stellar CME activity and its possible influence on exoplanets' environments: Importance of magnetospheric protection [5]
    Khodachenko, Maxim L., Sasunov, Yury, Arkhypov, Oleksiy V., Alexeev, Igor I., Belenkaya, Elena S., Lammer, Helmut, Kislyakova, Kristina G., Odert, Petra, Leitzinger, Martin & Güdel, Manuel, Nature of Prominences and their Role in Space Weather (Editors: Schmieder, Brigitte, Malherbe, Jean-Marie & Wu, S. T.), IAU Symposium, 300, p. 335
  2. Stellar wind interaction and pick-up ion escape of the Kepler-11 "super-Earths" [69]
    Kislyakova, K. G., Johnstone, C. P., Odert, P., Erkaev, N. V., Lammer, H., Lüftinger, T., Holmström, M., Khodachenko, M. L. & Güdel, M., A&A, 562, A116
  3. Magnetic moment and plasma environment of HD 209458b as determined from Lyα observations [125]
    Kislyakova, Kristina G., Holmström, Mats, Lammer, Helmut, Odert, Petra & Khodachenko, Maxim L., Science, 346, 981
  4. A search for flares and mass ejections on young late-type stars in the open cluster Blanco-1 [62]
    Leitzinger, M., Odert, P., Greimel, R., Korhonen, H., Guenther, E. W., Hanslmeier, A., Lammer, H. & Khodachenko, M. L., MNRAS, 443, 898
  5. Dynamics of Coronal Rain and Descending Plasma Blobs in Solar Prominences. I. Fully Ionized Case [40]
    Oliver, R., Soler, R., Terradas, J., Zaqarashvili, T. V. & Khodachenko, M. L., ApJ, 784, 21
  6. The PLATO 2.0 mission [1147]
    Rauer, H., Catala, C., Aerts, C., Appourchaux, T., Benz, W., Brandeker, A., Christensen-Dalsgaard, J., Deleuil, M., Gizon, L., Goupil, M. -J., Güdel, M., Janot-Pacheco, E., Mas-Hesse, M., Pagano, I., Piotto, G., Pollacco, D., Santos, Ċ., Smith, A., Suárez, J. -C., Szabó, R., Udry, S., Adibekyan, V., Alibert, Y., Almenara, J. -M., Amaro-Seoane, P., Eiff, M. Ammler-von, Asplund, M., Antonello, E., Barnes, S., Baudin, F., Belkacem, K., Bergemann, M., Bihain, G., Birch, A. C., Bonfils, X., Boisse, I., Bonomo, A. S., Borsa, F., Brandão, I. M., Brocato, E., Brun, S., Burleigh, M., Burston, R., Cabrera, J., Cassisi, S., Chaplin, W., Charpinet, S., Chiappini, C., Church, R. P., Csizmadia, Sz., Cunha, M., Damasso, M., Davies, M. B., Deeg, H. J., Díaz, R. F., Dreizler, S., Dreyer, C., Eggenberger, P., Ehrenreich, D., Eigmüller, P., Erikson, A., Farmer, R., Feltzing, S., de Oliveira Fialho, F., Figueira, P., Forveille, T., Fridlund, M., García, R. A., Giommi, P., Giuffrida, G., Godolt, M., Gomes da Silva, J., Granzer, T., Grenfell, J. L., Grotsch-Noels, A., Günther, E., Haswell, C. A., Hatzes, A. P., Hébrard, G., Hekker, S., Helled, R., Heng, K., Jenkins, J. M., Johansen, A., Khodachenko, M. L., Kislyakova, K. G., Kley, W., Kolb, U., Krivova, N., Kupka, F., Lammer, H., Lanza, A. F., Lebreton, Y., Magrin, D., Marcos-Arenal, P., Marrese, P. M., Marques, J. P., Martins, J., Mathis, S., Mathur, S., Messina, S., Miglio, A., Montalban, J., Montalto, M., Monteiro, M. J. P. F. G., Moradi, H., Moravveji, E., Mordasini, C., Morel, T., Mortier, A., Nascimbeni, V., Nelson, R. P., Nielsen, M. B., Noack, L., Norton, A. J., Ofir, A., Oshagh, M., Ouazzani, R. -M., Pápics, P., Parro, V. C., Petit, P., Plez, B., Poretti, E., Quirrenbach, A., Ragazzoni, R., Raimondo, G., Rainer, M., Reese, D. R., Redmer, R., Reffert, S., Rojas-Ayala, B., Roxburgh, I. W., Salmon, S., Santerne, A., Schneider, J., Schou, J., Schuh, S., Schunker, H., Silva-Valio, A., Silvotti, R., Skillen, I., Snellen, I., Sohl, F., Sousa, S. G., Sozzetti, A., Stello, D., Strassmeier, K. G., Švanda, M., Szabó, Gy. M., Tkachenko, A., Valencia, D., Van Grootel, V., Vauclair, S. D., Ventura, P., Wagner, F. W., Walton, N. A., Weingrill, J., Werner, S. C., Wheatley, P. J. & Zwintz, K., Experimental Astronomy, 38, 249
  7. Atmosphere Expansion and Mass Loss of Close-orbit Giant Exoplanets Heated by Stellar XUV. I. Modeling of Hydrodynamic Escape of Upper Atmospheric Material [80]
    Shaikhislamov, I. F., Khodachenko, M. L., Sasunov, Yu. L., Lammer, H., Kislyakova, K. G. & Erkaev, N. V., ApJ, 795, 132
  8. Reconnection Outflow Generated Turbulence in the Solar Wind [15]
    Vörös, Z., Sasunov, Y. L., Semenov, V. S., Zaqarashvili, T. V., Bruno, R. & Khodachenko, M., ApJ, 797, L10

2013

  1. Inflation of a Dipole Field in Laboratory Experiments: Toward an Understanding of Magnetodisk Formation in the Magnetosphere of a Hot Jupiter [7]
    Antonov, V. M., Boyarinsev, E. L., Boyko, A. A., Zakharov, Yu. P., Melekhov, A. V., Ponomarenko, A. G., Posukh, V. G., Shaikhislamov, I. F., Khodachenko, M. L. & Lammer, H., ApJ, 769, 28
  2. Solar Activity and Deep Convection Modeling [6]
    Arkhypov, O. V., Antonov, O. V. & Khodachenko, M. L., Solar Physics, 282, 39
  3. XUV-Exposed, Non-Hydrostatic Hydrogen-Rich Upper Atmospheres of Terrestrial Planets. Part I: Atmospheric Expansion and Thermal Escape [93]
    Erkaev, Nikolai V., Lammer, Helmut, Odert, Petra, Kulikov, Yuri N., Kislyakova, Kristina G., Khodachenko, Maxim L., Güdel, Manuel, Hanslmeier, Arnold & Biernat, Helfried, Astrobiology, 13, 1011
  4. XUV-Exposed, Non-Hydrostatic Hydrogen-Rich Upper Atmospheres of Terrestrial Planets. Part II: Hydrogen Coronae and Ion Escape [52]
    Kislyakova, Kristina G., Lammer, Helmut, Holmström, Mats, Panchenko, Mykhaylo, Odert, Petra, Erkaev, Nikolai V., Leitzinger, Martin, Khodachenko, Maxim L., Kulikov, Yuri N., Güdel, Manuel & Hanslmeier, Arnold, Astrobiology, 13, 1030
  5. Probing the blow-off criteria of hydrogen-rich `super-Earths' [96]
    Lammer, H., Erkaev, N. V., Odert, P., Kislyakova, K. G., Leitzinger, M. & Khodachenko, M. L., MNRAS, 430, 1247
  6. Stability of Earth-Like N2 Atmospheres: Implications for Habitability [9]
    Lammer, Helmut, Kislyakova, Kristina G., Güdel, Manuel, Holmström, Mats, Erkaev, Nikolai V., Odert, Petra & Khodachenko, Maxim L., The Early Evolution of the Atmospheres of Terrestrial Planets (Editors: Trigo, Raulin, Francois, Muller, Christian & Nixon, Conor), Astrophysics and Space Science Proceedings, 35, p. 33
  7. Torsional Alfvén waves in partially ionized solar plasma: effects of neutral helium and stratification [50]
    Zaqarashvili, T. V., Khodachenko, M. L. & Soler, R., A&A, 549, A113

2012

  1. Deep Convection and the Solar Chromosphere [8]
    Arkhypov, O. V., Antonov, O. V. & Khodachenko, M. L., Solar Physics, 278, 285
  2. Location of the Inner Edges of Astrophysical Discs Related to the Central Object [1]
    Belenkaya, Elena S., Alexeev, Igor I. & Khodachenko, Maxim L., Multi-scale Dynamical Processes in Space and Astrophysical Plasmas (Editors: Leubner, Manfred P. & Vörös, Zoltán), Astrophysics and Space Science Proceedings, 33, p. 217
  3. Magnetospheres of "Hot Jupiters": The Importance of Magnetodisks in Shaping a Magnetospheric Obstacle [57]
    Khodachenko, M. L., Alexeev, I., Belenkaya, E., Lammer, H., Grießmeier, J. -M., Leitzinger, M., Odert, P., Zaqarashvili, T. & Rucker, H. O., ApJ, 744, 70
  4. Magnetodisk-dominated magnetospheres of close orbit giant exoplanets [1]
    Khodachenko, M. L., Alexeev, I. I., Belenkaya, E. S. & Lammer, H., EAS Publications Series (Editors: Stehlé, C., Joblin, C. & d'Hendecourt, L.), EAS Publications Series, 58, p. 233
  5. Solar flares as proxy for the young Sun: satellite observed thermosphere response to an X17.2 flare of Earth's upper atmosphere [16]
    Krauss, S., Fichtinger, B., Lammer, H., Hausleitner, W., Kulikov, Yu. N., Ribas, I., Shematovich, V. I., Bisikalo, D., Lichtenegger, H. I. M., Zaqarashvili, T. V., Khodachenko, M. L. & Hanslmeier, A., Annales Geophysicae, 30, 1129
  6. Variability of solar/stellar activity and magnetic field and its influence on planetary atmosphere evolution [49]
    Lammer, Helmut, Güdel, Manuel, Kulikov, Yuri, Ribas, Ignasi, Zaqarashvili, Teimuraz V., Khodachenko, Maxim L., Kislyakova, Kristina G., Gröller, Hannes, Odert, Petra, Leitzinger, Martin, Fichtinger, Bibiana, Krauss, Sandro, Hausleitner, Walter, Holmström, Mats, Sanz-Forcada, Jorge, Lichtenegger, Herbert I. M., Hanslmeier, Arnold, Shematovich, Valery I., Bisikalo, Dmitry, Rauer, Heike & Fridlund, Malcolm, Earth, Planets and Space, 64, 179
  7. Exoplanet Upper Atmosphere Environment Characterization [2]
    Lammer, Helmut, Kislyakova, Kristina G., Odert, Petra, Leitzinger, Martin, Khodachenko, Maxim L., Holmström, Mats & Hanslmeier, Arnold, From Interacting Binaries to Exoplanets: Essential Modeling Tools (Editors: Richards, Mercedes T. & Hubeny, Ivan), IAU Symposium, 282, p. 525
  8. Cut-off wavenumber of Alfvén waves in partially ionized plasmas of the solar atmosphere [30]
    Zaqarashvili, T. V., Carbonell, M., Ballester, J. L. & Khodachenko, M. L., A&A, 544, A143

2011

  1. Supergiant Complexes of Solar Activity and Convection Zone [6]
    Arkhypov, O. V., Antonov, O. V. & Khodachenko, M. L., Solar Physics, 270, 1
  2. Possible manifestation of large-scale transverse oscillations of coronal loops in solar microwave emission [10]
    Khodachenko, M. L., Kislyakova, K. G., Zaqarashvili, T. V., Kislyakov, A. G., Panchenko, M., Zaitsev, V. V., Arkhypov, O. V. & Rucker, H. O., A&A, 525, A105
  3. Hydrogen ENA-cloud observation and modeling as a tool to study star-exoplanet interaction [20]
    Lammer, H., Kislyakova, K. G., Holmström, M., Khodachenko, M. L. & Grießmeier, J. -M., Astrophysics and Space Science, 335, 9
  4. UV transit observations of EUV-heated expanded thermospheres of Earth-like exoplanets around M-stars: testing atmosphere evolution scenarios [25]
    Lammer, H., Eybl, V., Kislyakova, K. G., Weingrill, J., Holmström, M., Khodachenko, M. L., Kulikov, Yu. N., Reiners, A., Leitzinger, M., Odert, P., Xiang Grüß, M., Dorner, B., Güdel, M. & Hanslmeier, A., Astrophysics and Space Science, 335, 39
  5. Pathways to Earth-Like Atmospheres. Extreme Ultraviolet (EUV)-Powered Escape of Hydrogen-Rich Protoatmospheres [51]
    Lammer, Helmut, Kislyakova, K. G., Odert, P., Leitzinger, M., Schwarz, R., Pilat-Lohinger, E., Kulikov, Yu. N., Khodachenko, M. L., Güdel, M. & Hanslmeier, A., Origins of Life and Evolution of the Biosphere, 41, 503
  6. Could CoRoT-7b and Kepler-10b be remnants of evaporated gas or ice giants? [38]
    Leitzinger, M., Odert, P., Kulikov, Yu. N., Lammer, H., Wuchterl, G., Penz, T., Guarcello, M. G., Micela, G., Khodachenko, M. L., Weingrill, J., Hanslmeier, A., Biernat, H. K. & Schneider, J., Planetary and Space Science, 59, 1472
  7. Search for indications of stellar mass ejections using FUV spectra [52]
    Leitzinger, M., Odert, P., Ribas, I., Hanslmeier, A., Lammer, H., Khodachenko, M. L., Zaqarashvili, T. V. & Rucker, H. O., A&A, 536, A62
  8. Comet-like tail-formation of exospheres of hot rocky exoplanets: Possible implications for CoRoT-7b [41]
    Mura, A., Wurz, P., Schneider, J., Lammer, H., Grießmeier, J. -M., Khodachenko, M. L., Weingrill, J., Guenther, E., Cabrera, J., Erikson, A., Fridlund, M., Milillo, A., Rauer, H. & von Paris, Ph., Icarus, 211, 1
  9. Damping of Alfvén waves in solar partially ionized plasmas: effect of neutral helium in multi-fluid approach [51]
    Zaqarashvili, T. V., Khodachenko, M. L. & Rucker, H. O., A&A, 534, A93
  10. Rossby waves and polar spots in rapidly rotating stars: implications for stellar wind evolution [30]
    Zaqarashvili, T. V., Oliver, R., Ballester, J. L., Carbonell, M., Khodachenko, M. L., Lammer, H., Leitzinger, M. & Odert, P., A&A, 532, A139
  11. The excitation of 5-min oscillations in the solar corona [11]
    Zaqarashvili, T. V., Murawski, K., Khodachenko, M. L. & Lee, D., A&A, 529, A85
  12. Magnetohydrodynamic waves in solar partially ionized plasmas: two-fluid approach [130]
    Zaqarashvili, T. V., Khodachenko, M. L. & Rucker, H. O., A&A, 529, A82

2010

  1. Exoplanet status report: Observation, characterization and evolution of exoplanets and their host stars [4]
    Lammer, H., Hanslmeier, A., Schneider, J., Stateva, I. K., Barthelemy, M., Belu, A., Bisikalo, D., Bonavita, M., Eybl, V., Coudé du Foresto, V., Fridlund, M., Dvorak, R., Eggl, S., Grießmeier, J. -M., Güdel, M., Günther, E., Hausleitner, W., Holmström, M., Kallio, E., Khodachenko, M. L., Konovalenko, A. A., Krauss, S., Ksanfomality, L. V., Kulikov, Yu. N., Kyslyakova, K., Leitzinger, M., Liseau, R., Lohinger, E., Odert, P., Palle, E., Reiners, A., Ribas, I., Rucker, H. O., Sarda, N., Seckbach, J., Shematovich, V. I., Sozzetti, A., Tavrov, A. & Xiang-Grüß, M., Solar System Research, 44, 290
  2. Geophysical and Atmospheric Evolution of Habitable Planets [40]
    Lammer, Helmut, Selsis, Frank, Chassefière, Eric, Breuer, Doris, Grießmeier, Jean-Mathias, Kulikov, Yuri N., Erkaev, Nikolai V., Khodachenko, Maxim L., Biernat, Helfried K., Leblanc, Francois, Kallio, Esa, Lundin, Richard, Westall, Frances, Bauer, Siegfried J., Beichman, Charles, Danchi, William, Eiroa, Carlos, Fridlund, Malcolm, Gröller, Hannes, Hanslmeier, Arnold, Hausleitner, Walter, Henning, Thomas, Herbst, Tom, Kaltenegger, Lisa, Léger, Alain, Leitzinger, Martin, Lichtenegger, Herbert I. M., Liseau, René, Lunine, Jonathan, Motschmann, Uwe, Odert, Petra, Paresce, Francesco, Parnell, John, Penny, Alan, Quirrenbach, Andreas, Rauer, Heike, Röttgering, Huub, Schneider, Jean, Spohn, Tilman, Stadelmann, Anja, Stangl, Günter, Stam, Daphne, Tinetti, Giovanna & White, Glenn J., Astrobiology, 10, 45
  3. Spectral line enhancements as signatures for stellar activity: AD Leonis - an example [2]
    Leitzinger, M., Odert, P., Hanslmeier, A., Ribas, I., Konovalenko, A. A., Vanko, M., Lammer, H., Khodachenko, M. L. & Rucker, H. O., International Journal of Astrobiology, 9, 235
  4. Implications of stellar activity for exoplanetary atmospheres [3]
    Odert, P., Leitzinger, M., Hanslmeier, A., Lammer, H., Khodachenko, M. L. & Ribas, I., International Journal of Astrobiology, 9, 239
  5. Observation of Kink Instability During Small B5.0 Solar Flare on 2007 June 4 [103]
    Srivastava, A. K., Zaqarashvili, T. V., Kumar, Pankaj & Khodachenko, M. L., ApJ, 715, 292
  6. Propagation of a sausage soliton in the solar lower atmosphere observed by Hinode/SOT [14]
    Zaqarashvili, T. V., Kukhianidze, V. & Khodachenko, M. L., MNRAS, 404, L74

2009

  1. Equivalent Electric Circuit Models of Coronal Magnetic Loops and Related Oscillatory Phenomena on the Sun [36]
    Khodachenko, Maxim L., Zaitsev, Valerii V., Kislyakov, Albert G. & Stepanov, Alexander V., Space Science Reviews, 149, 83
  2. Determining the mass loss limit for close-in exoplanets: what can we learn from transit observations? [139]
    Lammer, H., Odert, P., Leitzinger, M., Khodachenko, M. L., Panchenko, M., Kulikov, Yu. N., Zhang, T. L., Lichtenegger, H. I. M., Erkaev, N. V., Wuchterl, G., Micela, G., Penz, T., Biernat, H. K., Weingrill, J., Steller, M., Ottacher, H., Hasiba, J. & Hanslmeier, A., A&A, 506, 399
  3. What makes a planet habitable? [271]
    Lammer, H., Bredehöft, J. H., Coustenis, A., Khodachenko, M. L., Kaltenegger, L., Grasset, O., Prieur, D., Raulin, F., Ehrenfreund, P., Yamauchi, M., Wahlund, J. -E., Grießmeier, J. -M., Stangl, G., Cockell, C. S., Kulikov, Yu. N., Grenfell, J. L. & Rauer, H., Astronomy and Astrophysics Review, 17, 181
  4. Decametric observations of active M-dwarfs [9]
    Leitzinger, M., Odert, P., Hanslmeier, A., Konovalenko, A. A., Vanko, M., Khodachenko, M. L., Lammer, H. & Rucker, H. O., 15th Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun (Editors: Stempels, Eric), American Institute of Physics Conference Series, 1094, p. 680
  5. Analytical configurations of a force-free magnetic cylinder in the solar wind [1]
    Mingalev, O. V., Mingalev, I. V., Mingalev, V. S. & Khodachenko, M. L., Geomagnetism and Aeronomy, 49, 574
  6. The sodium exosphere of Mercury: Comparison between observations during Mercury's transit and model results [77]
    Mura, Alessandro, Wurz, Peter, Lichtenegger, Herbert I. M., Schleicher, Helmold, Lammer, Helmut, Delcourt, Dominique, Milillo, Anna, Orsini, Stefano, Massetti, Stefano & Khodachenko, Maxim L., Icarus, 200, 1
  7. A catalogue of nearby M stars [0]
    Odert, P., Leitzinger, M., Hanslmeier, A., Lammer, H., Khodachenko, M. L., Ribas, I., Vanko, M., Konovalenko, A. A. & Rucker, H. O., 15th Cambridge Workshop on Cool Stars, Stellar Systems, and the Sun (Editors: Stempels, Eric), American Institute of Physics Conference Series, 1094, p. 947
  8. Daily variations of auroral kilometric radiation observed by STEREO [9]
    Panchenko, M., Khodachenko, M. L., Kislyakov, A. G., Rucker, H. O., Hanasz, J., Kaiser, M. L., Bale, S. D., Lamy, L., Cecconi, B., Zarka, P. & Goetz, K., Geophysical Research Letters, 36, L06102

2007

  1. Comparative studies of meteoroid-planet interaction in the inner solar system [7]
    Christou, Apostolos A., Oberst, Juergen, Koschny, Detlef, Vaubaillon, Jeremie, McAuliffe, Jonathan P., Kolb, Christophe, Lammer, Helmut, Mangano, Valeria, Khodachenko, Maxim, Kazeminejad, Bobby & Rucker, Helmut O., Planetary and Space Science, 55, 2049
  2. Damping of oscillations by ion-neutral collisions in a prominence plasma [95]
    Forteza, P., Oliver, R., Ballester, J. L. & Khodachenko, M. L., A&A, 461, 731
  3. Exoplanetary radio emission under different stellar wind conditions [73]
    Grießmeier, J. -M., Preusse, S., Khodachenko, M., Motschmann, U., Mann, G. & Rucker, H. O., Planetary and Space Science, 55, 618
  4. Mass loss of “Hot Jupiters”—Implications for CoRoT discoveries. Part I: The importance of magnetospheric protection of a planet against ion loss caused by coronal mass ejections [50]
    Khodachenko, M. L., Lammer, H., Lichtenegger, H. I. M., Langmayr, D., Erkaev, N. V., Grießmeier, J. -M., Leitner, M., Penz, T., Biernat, H. K., Motschmann, U. & Rucker, H. O., Planetary and Space Science, 55, 631
  5. Coronal Mass Ejection (CME) Activity of Low Mass M Stars as An Important Factor for The Habitability of Terrestrial Exoplanets. I. CME Impact on Expected Magnetospheres of Earth-Like Exoplanets in Close-In Habitable Zones [227]
    Khodachenko, Maxim L., Ribas, Ignasi, Lammer, Helmut, Grießmeier, Jean-Mathias, Leitner, Martin, Selsis, Franck, Eiroa, Carlos, Hanslmeier, Arnold, Biernat, Helfried K., Farrugia, Charles J. & Rucker, Helmut O., Astrobiology, 7, 167
  6. Processes that Promote and Deplete the Exosphere of Mercury [113]
    Killen, Rosemary, Cremonese, Gabrielle, Lammer, Helmut, Orsini, Stefano, Potter, Andrew E., Sprague, Ann L., Wurz, Peter, Khodachenko, Maxim L., Lichtenegger, Herbert I. M., Milillo, Anna & Mura, Alessandro, Space Science Reviews, 132, 433
  7. Coronal Mass Ejection (CME) Activity of Low Mass M Stars as An Important Factor for The Habitability of Terrestrial Exoplanets. II. CME-Induced Ion Pick Up of Earth-like Exoplanets in Close-In Habitable Zones [278]
    Lammer, Helmut, Lichtenegger, Herbert I. M., Kulikov, Yuri N., Grießmeier, Jean-Mathias, Terada, N., Erkaev, Nikolai V., Biernat, Helfried K., Khodachenko, Maxim L., Ribas, Ignasi, Penz, Thomas & Selsis, Franck, Astrobiology, 7, 185
  8. M Stars as Targets for Terrestrial Exoplanet Searches And Biosignature Detection [325]
    Scalo, John, Kaltenegger, Lisa, Segura, Antígona, Fridlund, Malcolm, Ribas, Ignasi, Kulikov, Yu. N., Grenfell, John L., Rauer, Heike, Odert, Petra, Leitzinger, Martin, Selsis, F., Khodachenko, Maxim L., Eiroa, Carlos, Kasting, Jim & Lammer, Helmut, Astrobiology, 7, 85

2006

  1. Reply to the Comment on the Paper “On the formation of three types of e.m. elements in a current-carrying plasma with double flows” [0]
    Gubchenko, V. M., Biernat, H. K., Khodachenko, M. L., Rucker, H. O. & Zaitsev, V. V., Advances in Space Research, 38, 1898
  2. On the formation of three types of e.m. elements in a current-carrying plasma with double flows [4]
    Gubchenko, V. M., Biernat, H. K., Khodachenko, M. L., Rucker, H. O. & Zaitsev, V. V., Advances in Space Research, 37, 1295
  3. Microwave Diagnostics of Dynamic Processes and Oscillations in Groups of Solar Coronal Magnetic Loops [5]
    Khodachenko, M. L., Rucker, H. O., Kislyakov, A. G., Zaitsev, V. V. & Urpo, S., Space Science Reviews, 122, 137
  4. On the mechanisms of MHD wave damping in the partially ionized solar plasmas [26]
    Khodachenko, M. L., Rucker, H. O., Oliver, R., Arber, T. D. & Hanslmeier, A., Advances in Space Research, 37, 447

2005

  1. Solar plasma theoretical models for STEREO and Solar-B [7]
    Khodachenko, M. L. & Rucker, H. O., Advances in Space Research, 36, 1561
  2. Low-frequency modulations in the solar microwave radiation as a possible indicator of inductive interaction of coronal magnetic loops [14]
    Khodachenko, M. L., Zaitsev, V. V., Kislyakov, A. G., Rucker, H. O. & Urpo, S., A&A, 433, 691
  3. Collisional dissipation of Alfvén waves in a partially ionised solar chromosphere [106]
    Leake, J. E., Arber, T. D. & Khodachenko, M. L., A&A, 442, 1091

2004

  1. MHD effects triggered by beams of fast particles in magnetic tubes and their possible relation to plasma heating and dynamics during solar flares [1]
    Khodachenko, M. L. & Rucker, H. O., Astrophysics and Space Science, 289, 111
  2. Collisional and viscous damping of MHD waves in partially ionized plasmas of the solar atmosphere [111]
    Khodachenko, M. L., Arber, T. D., Rucker, H. O. & Hanslmeier, A., A&A, 422, 1073

2003

  1. Inductive electromagnetic effects in solar current-carrying magnetic loops [13]
    Khodachenko, M., Haerendel, G. & Rucker, H. O., A&A, 401, 721

2002

  1. Formation of Intensive Magnetic Flux Tubes in a Converging Flow of Partially Ionized Solar Photospheric Plasma [31]
    Khodachenko, M. L. & Zaitsev, V. V., Astrophysics and Space Science, 279, 389

1998

  1. On the electromagnetic fields generated by a slowly moving conducting body in a magnetized plasma. Possible applications for the Io-Jovian system, spacecraft, and plasma probes [0]
    Khodachenko, M. L., Gubchenko, V. M. & Rucker, H. O., Radiophysics and Quantum Electronics, 41, 813

1997

  1. Energy release in corona magnetic loops. [17]
    Zajtsev, V. V. & Khodachenko, M. L., Radiophysics and Quantum Electronics, 40, 114

1996

  1. Electromagnetic properties of hot collisionless plasma in magnetic reconnection regions [0]
    Gubchenko, V. M. & Khodachenko, M. L., Radiophysics and Quantum Electronics, 39, 91
  2. On the plasma dynamics in solar magnetic tubes [1]
    Khodachenko, M. L., Radiophysics and Quantum Electronics, 39, 36

1994

  1. On the origin of soft x-ray and microwave sources of emission in solar magnetic loops [0]
    Khodachenko, M. L. & Zaitsev, V. V., Radiophysics and Quantum Electronics, 37, 543

1992

  1. Dynamic Regimes of Prominence Evolution [14]
    Bakhareva, N. M., Zaitsev, V. V. & Khodachenko, M. L., Solar Physics, 139, 299


Created on Thu May 22 04:37:13 2025.