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~ Curriculum Vitae ~

English

Basic Information

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$B=jB0(B:Swedish Institute of Space Physics ($B%9%&%'!<%G%s9qN)%9%Z!<%9J*M}8&5f=j(B)
Position:Associate Professor (Docent)

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1994.4-1998.3$B5~ETBg3XM}3XItM}3X2J(B
1998.4-2000.3$B5~ETBg3XM}3X8&5f2JB@M[OG@17OEE<'5$3X9V:B=$;N2]Dx(B
2000.4-2003.3$B5~ETBg3XM}3X8&5f2JB@M[OG@17OEE<'5$3X9V:BGn;N2]Dx(B
2003.3.24$BM}3XGn;N
2015.11.2$B%I%;%s%H(B($B1'Ch6u4VJ*M}(B)$B

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2002.4-2003.3$BF|K\3X=Q?66=2q(B $BFCJL8&5f0w(B(DC2)
2003.4-2004.3$BF|K\3X=Q?66=2q(B $BFCJL8&5f0w(B(PD)$B5~ETBg3XM}3X8&5f2JB@M[OG@17OEE<'5$3X9V:B=jB0!#(BSwedish Institute of Space Physics (IRF) $B$K(B10$B%v7nDxEYBZ:_(B
2004.4-2006.3$BF|K\3X=Q?66=2q(B $B3$30FCJL8&5f0w(BSwedish Institute of Space Physics (IRF) $B=jB0(B
2006.4-2006.12$BF|K\3X=Q?66=2q(B $BFCJL8&5f0w(B(PD)$B1'Ch9R6u8&5f3+H/5!9=(B(JAXA)$B!&1'Ch2J3X8&5fK\It=jB0(B
2007.1-ScientistSwedish Institute of Space Physics
2013.2-ScientistPhysics Department, Faculty of Science and Technology, Umea University
2015.11-Associate ProfessorPhysics Department, Faculty of Science and Technology, Umea University

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In press

Printed

  1. Futaana, Y., M. Shimoyama, M. Wieser, S. Karlsson, H. Andersson, H. Nilsson, X.-D. Wang, A. Fedorov, N. Andre, M. Holmstrom, and S. Barabash, Galactic cosmic rays at Mars and Venus: Temporal variations from hours to decades measured as the background signal of onboard microchannel plates, The Astrophysical Journal, 940(2), 178, doi:10.3847/1538-4357/ac9a49, 2022.
  2. Yoshifumi Futaana, Mats Holmstrom, Andrey Fedorov, Stas Barabash, Does Phobos relfect solar wind protons? Mars Express special flyby operations with and without the presence of Phobos, J. Geophys. Res., 126, e2021JE006969, doi:10.1029/2021JE006969, 2021.
  3. Yoshifumi Futaana, Xiao-Dong Wang, Elias Roussos, Norbert Krupp, Jan-Erik Wahlund, Karin Agren, Markus Fr&amul;nz, Stas Barabash, Fan Lei, Daniel Heynderickx, Pete Truscott, Fabrice Cipriani, David Rodgers, Corotation plasma environment model (CPEM): An empirical probability model of the Jovian magnetosphere, IEEE T. Plasma Sci., doi: 10.1109/TPS.2018.2831004, 2018.
  4. Futaana, Y., S. Barabash, M. Wieser, P. Wurz, D. Hurley, M. Horanyi, U. Mall, N. Andre, N. Ivchenko, J. Oberst, K. Retherford, A. Coates, A. Masters, J.-E. Wahlund, E. Kalli and SELMA proposal team, Planet. Space Sci., doi:10.1016/j.pss.2017.11.002, 2017.
  5. Futaana Y., G. Stenberg Wieser, S. Barabash, J. G. Luhmann, Solar wind interaction and impact on the Venus atmosphere, Space Sci. Rev., doi:10.1007/s11214-017-0362-8, 2017. (Open access)
  6. Low-Energy Energetic Neutral Atom Imaging of Io Plasma and Neutral Tori, Futaana, Y., S. Barabash, X.-D. Wang, M. Wieser, G. S. Wieser, P. Wurz, N. Krupp, P. C. Brandt, Planet. Space Sci., 108, 41--53, doi: 10.1016/j.pss.2014.12.022, 2015.
  7. Remote energetic neutral atom imaging of electric potential over a lunar magnetic anomaly, Futaana, Y., S. Barabash, M. Wieser, C. Lue, P. Wurz, A. Vorburger, A. Bhardwaj, K. Asamura, Geophys. Res. Lett., doi:10.1002/grl.50135, 2013. (Open access)
  8. Empirical energy spectra of neutralized solar wind protons from the lunar regolith, Futaana, Y., S. Barabash, M. Wieser, M. Holmström, C. Lue, P. Wurz, A. Schaufelberger, A. Bhardwaj, M. B. Dhanya, K. Asamura, J. Geophys. Res., 117, 5, E05005, doi:10.1029/2011JE004019, 2012. (Open access)
  9. Exospheres and Energetic Neutral Atoms of Mars, Venus and Titan, Futaana, Y., J. Y. Chaufray, H. T. Smith, P. Garnier, H. Lichtenegger, M. Delva, H. Gröller, A. Mura, Space Sci. Rev., doi:10.1007/s11214-011-9834-4, 162, 1-4, 213-266, 2011.
  10. Protons in the near lunar wake observed by the SARA instrument on board Chandrayaan-1, Futaana, Y., S. Barabash, M. Wieser, M. Holmström, A. Bhardwaj, M. B. Dhanya, R. Sridharan, P. Wurz, A. Schaufelberger, K. Asamura, J. Geophys. Res., 115, A10248, doi:10.1029/2010JA015264, 2010. (Open access)
  11. Backscattered solar wind protons by Phobos, Futaana, Y., S. Barabash, M. Holmstrom, A. Fedorov, H. Nilsson, R. Lundin, E. Dubinin, and M. Franz, J. Geophys. Res., 115, A10213, doi:10.1029/2010JA015486, 2010. (Open access)
  12. Eenergetic Neutral Atom Occulation: New remote sensing technique to study the lunar exosphere, Y. Futaana, S. Nakano, W. Martin, S. Barabash, J. Geophys. Res, 113, A11204, doi:10.1029/2008JA013356, 2008. (Open access)
  13. Mars Express and Venus Express multi-point observations of geoeffective solar flare events in December 2006, Y. Futaana, S. Barabash, M. Yamauchi, S. McKenna-Lawlor, R. Lundin, J.G. Luhmann, D. Brain, E. Carlsson, J.-A. Sauvaud, J. D. Winningham, R. A. Frahm, P. Wurz, M. Holmström, H. Gunell, E. Kallio, W. Baumjohann, H. Lammer, J. R. Sharber, K. C. Hsieh, H. Andersson, A. Grigoriev, K. Brinkfeldt, H. Nilsson, K. Asamura, T. L. Zhang, A. J. Coates, D. R. Linder, D. O. Kataria, C. C. Curtis, B. R. Sandel, A. Fedorov, C. Mazelle, J.-J. Thocaven, M. Grande, Hannu E. J. Koskinen, T. Sales, W. Schmidt, P. Riihela, J. Kozyra, N. Krupp, J. Woch, M. Fränz, E. Dubinin, S. Orsini, R. Cerulli-Irelli, A. Mura, A. Milillo, M. Maggi, E. Roelof, P. Brandt, K. Szego, J. Scherrer, P. Bochsler, Planet. Space Sci., 56 (8), 873-880, 2008.
  14. Global response of Martian plasma environment to an interplanetary structure: From ENA and plasma observations at Mars, Y. Futaana, S. Barabash, A. Grigoriev, D. Winningham, R. Frahm, M. Yamauchi, R. Lundin, Space Sci. Rev., 126, 315-332, 2006. (Preprint available)
  15. First ENA observations at Mars: ENA emissions from the Martian upper atmosphere, Y. Futaana, S. Barabash, A. Grigoriev, M. Holmström, E. Kallio, P. C:son Brandt, H. Gunell, K. Brinkfeld, R. Lundin, H. Andersson, M. Yamauchi, S. McKenna-Lawlor, J. D. Winningham, R. A. Frahm, J. R. Sharber, J. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, T. Säles, P. Riihela, W. Schmidt, H. Koskinen, J. Kozyra, J. Luhmann, E. Roelof, D. Williams, S. Livi, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, J.-A. Sauvaud, A. Fedorov, J.-J. Thocaven, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, A. Galli, N. Krupp, J. Woch, M. Fraenz, K. Asamura, C. Dierker, Icarus, 182, 424-430, 2006. (Preprint available)
  16. First ENA observations at Mars: Subsolar ENA jet, Y. Futaana, S. Barabash, A. Grigoriev, M. Holmström, E. Kallio, P. C:son Brandt, H. Gunell, K. Brinkfeld, R. Lundin, H. Andersson, M. Yamauchi, S. McKenna-Lawlor, J. D. Winningham, R. A. Frahm, J. R. Sharber, J. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, T. Säles, P. Riihela, W. Schmidt, H. Koskinen, J. Kozyra, J. Luhmann, E. Roelof, D. Williams, S. Livi, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, J.-A. Sauvaud, A. Fedorov, J.-J. Thocaven, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, N. Krupp, J. Woch, M. Fraenz, K. Asamura, C. Dierker, Icarus, 182, 413-423, 2006. (Preprint available)
  17. Low energy neutral atoms imaging of the Moon, Y. Futaana, S. Barabash, M. Holmström, A. Bhardwaj, Planet. Space Sci. 54, 132-143, 2006. (Preprint available)
  18. Moon-related nonthermal ions observed by NOZOMI: Species, sources, and generation mechanisms, Y. Futaana, S. Machida, Y. Saito, A. Matsuoka, H. Hayakawa, J. Geophys. Res. 108(A10), doi=10.1029/2002JA009366, 2003. (Open Access)
  19. Counterstreaming electrons in the near vicinity of the Moon observed by plasma instruments on board NOZOMI, Y. Futaana, S. Machida, Y. Saito, A. Matsuoka, H. Hayakawa, J. Geophys. Res. 106(A9), 18,729-18,740, 2001. (Open Access)

$B8xI=O@J8(B($B6&Cx!&::FIM-(B)

  1. Aizawa, S., Y. Harada, N. Andr ́e, Y. Saito, S. Barabash, D. Delcourt, J.-A. Sauvaud, A. Barthe, A. Fe- dorov, E. Penou, S. Yokota, W. Miyake, M. Persson, Q. N ́enon, M. Rojo, Y. Futaana, K. Asamura, M. Shimoyama, L. Z. Hadid, D. Fontaine, B. Katra, M. Fraenz, N. Krupp, S. Matsuda, and G. Murakami, Direct evidence of substorm-related impulsive injections of electrons at mercury, Nature Communica- tions, 14(1), 4019, doi:10.1038/s41467-023-39565-4, 2023.
  2. Collinson, G. A., R. A. Frahm, A. Glocer, L. Daldorff, E. Thiemann, S.-B. Kang, G. Gronoff, Y. Futaana, and T. Zhang, A survey of strong electric potential drops in the ionosphere of venus, Geophysical Research Letters, 50(18), e2023GL104,989, doi:https://doi.org/10.1029/2023GL104989, 2023.
  3. Dandouras, I., M. G. G. T. Taylor, J. De Keyser, Y. Futaana, R. A. Bamford, G. Branduardi-Raymont, J.-Y. Chaufray, D. Constantinescu, E. De Angelis, P. Devoto, J. Eastwood, M. Echim, P. Garnier, B. Grison, D. Hercik, H. Lammer, A. Laurens, F. Leblanc, A. Milillo, R. Nakamura, L. Pˇrech, E. Roussos, Sˇ. Sˇtver ́ak, J. Forest, A. Trouche, S. L. G. Hess, J.-C. Mateo-V ́elez, J. Carpenter, and J. Winter, Space plasma physics science opportunities for the lunar orbital platform - gateway, Frontiers in Astronomy and Space Sciences, 10, doi:10.3389/fspas.2023.1120302, 2023.
  4. Huybrighs, H. L. F., A. Bl ̈ocker, E. Roussos, C. van Buchem, Y. Futaana, M. K. G. Holmberg, C. Goetz, and O. Witasse, Europa’s perturbed fields and induced dipole affect energetic proton depletions during distant alfv ́en wing flybys, Journal of Geophysical Research: Space Physics, n/a(n/a), e2023JA031,420, doi:https://doi.org/10.1029/2023JA031420, 2023.
  5. Nilsson, H., Q. Zhang, G. Stenberg Wieser, M. Holmstr ̈om, S. Barabash, Y. Futaana, A. Fedorov, M. Persson, and M. Wieser, Solar cycle variation of ion escape from mars, Icarus, 393, 114,610, doi: https://doi.org/10.1016/j.icarus.2021.114610, 2023.
  6. Rojas Mata, S., G. Stenberg Wieser, Y. Futaana, and T. Zhang, Proton plasma asymmetries between venus’ quasi-perpendicular and quasi-parallel magnetosheaths, Journal of Geophysical Research: Space Physics, 128(6), e2022JA031,149, doi:https://doi.org/10.1029/2022JA031149, 2023.
  7. S ́anchez-Cano, B., O. Witasse, E. W. Knutsen, D. Meggi, S. Viet, M. Lester, R. F. Wimmer- Schweingruber, M. Pinto, R. Moissl, J. Benkhoff, H. Opgenoorth, U. Auster, J. de Brujine, P. Collins, G. De Marchi, D. Fischer, Y. Futaana, J. Godfrey, D. Heyner, M. Holmstrom, A. Johnstone, S. Joyce, D. Lakey, S. Martinez, D. Milligan, E. Montagnon, D. Mu ̈ller, S. A. Livi, T. Prusti, J. Raines, I. Richter, D. Schmid, P. Schmitz, H. Svedhem, M. G. G. T. Taylor, E. Tremolizzo, D. Titov, C. Wilson, S. Wood, and J. Zender, Solar energetic particle events detected in the housekeeping data of the european space agency’s spacecraft flotilla in the solar system, Space Weather, 21(8), e2023SW003,540, doi: https://doi.org/10.1029/2023SW003540, 2023.
  8. Signoles, C., M. Persson, Y. Futaana, S. Aizawa, N. Andr ́e, S. Bergman, A. Fedorov, V. Lindwall, N. Martinez, C. Mazelle, S. Rojas Mata, A. Wolff, and T. L. Zhang, Influence of solar wind variations on the shapes of venus’plasma boundaries based on venus express observations, The Astrophysical Journal, 954(1), 95, doi:10.3847/1538-4357/ace7b1, 2023.
  9. Simon Wedlund, C., M. Volwerk, C. Mazelle, S. Rojas Mata, G. Stenberg Wieser, Y. Futaana, J. Halekas, D. Rojas-Castillo, C. Bertucci, and J. Espley, Statistical distribution of mirror-mode-like structures in the magnetosheaths of unmagnetised planets – part 1: Mars as observed by the maven spacecraft, Annales Geophysicae, 41(1), 225–251, doi:10.5194/angeo-41-225-2023, 2023.
  10. Wang, X.-D., S. Fatemi, H. Nilsson, Y. Futaana, M. Holmstr ̈om, and S. Barabash, Solar wind interaction with mars: electric field morphology and source terms, Monthly Notices of the Royal Astronomical Society, 521(3), 3597–3607, doi:10.1093/mnras/stad247, 2023.
  11. ] Xu, Q., X. Xu, P. Zuo, Y. Futaana, Q. Chang, and H. Gu, Solar control of the pickup ion plume in the dayside magnetosheath of venus, Geophysical Research Letters, 50(4), e2022GL102,401, doi: https://doi.org/10.1029/2022GL102401, 2023.
  12. Galli, A., A. Vorburger, S. R. Carberry Mogan, E. Roussos, G. Stenberg Wieser, P. Wurz, M. F ̈ohn, N. Krupp, M. Fr ̈anz, S. Barabash, Y. Futaana, P. C. Brandt, P. Kollmann, D. K. Haggerty, G. H. Jones, R. E. Johnson, O. J. Tucker, S. Simon, T. Tippens, and L. Liuzzo, Callisto’s atmosphere and its space environment: Prospects for the particle environment package on board juice, Earth and Space Science, 9(5), e2021EA002,172, doi:https://doi.org/10.1029/2021EA002172, 2022.
  13. Palmerio, E., C. O. Lee, I. G. Richardson, T. Nieves-Chinchilla, L. F. G. Dos Santos, J. R. Gruesbeck, N. V. Nitta, M. L. Mays, J. S. Halekas, C. Zeitlin, S. Xu, M. Holmstr ̈om, Y. Fu- taana, T. Mulligan, B. J. Lynch, and J. G. Luhmann, Cme evolution in the structured heliosphere and effects at earth and mars during solar minimum, Space Weather, 20(9), e2022SW003,215, doi: https://doi.org/10.1029/2022SW003215, 2022.
  14. Persson, M., S. Aizawa, N. Andr ́e, S. Barabash, Y. Saito, Y. Harada, D. Heyner, S. Orsini, A. Fedorov, C. Mazelle, Y. Futaana, L. Z. Hadid, M. Volwerk, G. Collinson, B. Sanchez-Cano, A. Barthe, E. Penou, S. Yokota, V. G ́enot, J. A. Sauvaud, D. Delcourt, M. Fraenz, R. Modolo, A. Milillo, H. U. Auster, I. Richter, J. Z. D. Mieth, P. Louarn, C. J. Owen, T. S. Horbury, K. Asamura, S. Matsuda, H. Nilsson, M. Wieser, T. Alberti, A. Varsani, V. Mangano, A. Mura, H. Lichtenegger, G. Laky, H. Jeszenszky, K. Masunaga, C. Signoles, M. Rojo, and G. Murakami, Bepicolombo mission confirms stagnation region of venus and reveals its large extent, Nature Communications, 13(1), 7743, doi:10.1038/s41467-022- 35061-3, 2022.
  15. Zhang, C., Y. Futaana, H. Nilsson, Z. Rong, M. Persson, L. Klinger, X. Wang, G. S. Wieser, S. Barabash, C. Dong, M. Holmstr ̈om, Y. Soobiah, and Y. Wei, Mars-ward ion flows in the mar- tian magnetotail: Mars express observations, Geophysical Research Letters, 49(21), e2022GL100,691, doi:https://doi.org/10.1029/2022GL100691, 2022a.
  16. Zhang, C., Z. Rong, L. Klinger, H. Nilsson, Z. Shi, F. He, J. Gao, X. Li, Y. Futaana, R. Ramstad, X. Wang, M. Holmstr ̈om, S. Barabash, K. Fan, and Y. Wei, Three-dimensional configuration of induced magnetic fields around mars, Journal of Geophysical Research: Planets, 127(8), e2022JE007,334, doi: https://doi.org/10.1029/2022JE007334, 2022b.
  17. Nilsson, H., A. Moeslinger, H. N. Williamson, S. Bergman, H. Gunell, G. Stenberg Wieser, Y. Futaana, T. Karlsson, E. Behar, and M. Holmstr ̈om, Upstream solar wind speed at comet 67p, A&A, 659, 2022.
  18. Pontoni, A., M. Shimoyama, Y. Futaana, S. Fatemi, A. R. Poppe, M. Wieser, and S. Barabash, Simulations of energetic neutral atom sputtering from ganymede in preparation for the juice mission, Journal of Geophysical Research: Space Physics, 127(1), e2021JA029,439, doi: https://doi.org/10.1029/2021JA029439, 2022.
  19. Rojas Mata, S., G. Stenberg Wieser, Y. Futaana, A. Bader, M. Persson, A. Fedorov, and T. Zhang, Proton temperature anisotropies in the venus plasma environment during solar mini- mum and maximum, Journal of Geophysical Research: Space Physics, 127(1), e2021JA029,611, doi: https://doi.org/10.1029/2021JA029611, 2022.
  20. Wang, X.-D., B. Klecker, G. Nicolaou, S. Barabash, M. Wieser, P. Wurz, A. Galli, F. Cipriani, and Y. Futaana, Neutralized solar energetic particles for sep forecasting: Feasibility study of an innovative technique for space weather applications, Earth Planet. Phys., 6(1), 42–51, doi:10.26464/epp2022003, 2022.
  21. Gao, J. W., Z. J. Rong, M. Persson, G. Stenberg, Y. C. Zhang, L. Klinger, X. D. Wang, D. Liu, Y. Wei, S. Barabash, and Y. Futaana, In situ observations of the ion diffusion region in the venu- sian magnetotail, Journal of Geophysical Research: Space Physics, 126(1), e2020JA028,547, doi: https://doi.org/10.1029/2020JA028547, 2021.
  22. Huybrighs, H. L. F., E. Roussos, A. Bl ̈ocker, N. Krupp, Y. Futaana, S. Barabash, L. Z. Hadid, M. K. G. Holmberg, and O. Witasse, Reply to comment on “an active plume eruption on europa during galileo flyby e26 as indicated by energetic proton depletions”, Geophysical Research Letters, 48(18), e2021GL095,240, doi:https://doi.org/10.1029/2021GL095240, 2021.
  23. Nilsson, H., Q. Zhang, G. Stenberg Wieser, M. Holmstr ̈om, S. Barabash, Y. Futaana, A. Fedorov, M. Persson, and M. Wieser, Solar cycle variation of ion escape from Mars, Icarus, p. 114610, doi: https://doi.org/10.1016/j.icarus.2021.114610, 2021.
  24. Palmerio, E., E. K. J. Kilpua, O. Witasse, D. Barnes, B. S ́anchez-Cano, A. J. Weiss, T. Nieves- Chinchilla, C. M ̈ostl, L. K. Jian, M. Mierla, A. N. Zhukov, J. Guo, L. Rodriguez, P. J. Lowrance, A. Isavnin, L. Turc, Y. Futaana, and M. Holmstr ̈om, Cme magnetic structure and imf preconditioning affecting sep transport, Space Weather, n/a (n/a), e2020SW002,654, doi: https://doi.org/10.1029/2020SW002654, 2021a.
  25. Palmerio, E., T. Nieves-Chinchilla, E. K. J. Kilpua, D. Barnes, A. N. Zhukov, L. K. Jian, O. Witasse, G. Provan, C. Tao, L. Lamy, T. J. Bradley, M. L. Mays, C. M ̈ostl, E. Roussos, Y. Futaana, A. Masters, and B. S ́anchez-Cano, Magnetic structure and propagation of two interacting cmes from the sun to saturn, Journal of Geophysical Research: Space Physics, 126(11), e2021JA029,770, doi: https://doi.org/10.1029/2021JA029770, 2021b.
  26. Persson, M., Y. Futaana, R. Ramstad, A. Schillings, K. Masunaga, H. Nilsson, A. Fedorov, and S. Barabash, Global venus-solar wind coupling and oxygen ion escape, Geophysical Research Letters, 48(3), e2020GL091,213, doi:https://doi.org/10.1029/2020GL091213, 2021.
  27. Qin, J., H. Zou, Y. Futaana, Y. Ye, Y. Hao, E. Nielsen, and J. Wang, Double-peak structures of martian nightside total electron content in strong crustal magnetic cusp regions, Geophysical Research Letters, 48(7), e2021GL092,662, doi:https://doi.org/10.1029/2021GL092662, 2021.
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  159. ENA detection in the dayside of Mars: ASPERA-3 NPD statistical study, A. Mura, S. Orsini, A. Milillo, E. Kallio, A. Galli, S. Barabash, P. Wurz, A. Grigoriev, Y. Futaana, H. Andersson, R. Lundin, M. Yamauchi, M. Fraenz, N. Krupp, J. Woch, K. Asamura, A.J. Coates, C.C. Curtis, K.C. Hsieh, B.R. Sandel, A. Fedorov, M. Grande, H. Koskinen, J.U. Kozyra, J.G. Luhmann, S. McKenna-Lawlor, R. Cerulli-Irelli, R. D'Amicis, M. Maggi, S. Massetti, E.C. Roelof, P.C. Brandt, D.J. Winningham, R.A. Frahm and J.R. Sharber, Planet. Space Sci., 56 (6), 840-845, 2008.
  160. The possibility of studying the lunar ionosphere with the SELENE radio science experiment, T. Imamura, K. Oyama, T. Iwata, Y. Kono, K. Matsumoto, Q. Liu, H. Noda, Y. Futaana, A. Nabatov, Earth Planets Space, 60, 387-390, 2008.
  161. The loss of ions from Venus through the plasma wake, S. Barabash, A. Fedorov, J. J. Sauvaud, R. Lundin, C. T. Russell, Y. Futaana, T. L. Zhang, H. Andersson,K. Brinkfeldt, A. Grigoriev, M. Holmström, M. Yamauchi, K. Asamura, W. Baumjohann, H. Lammer, A. J. Coates, D. O. Kataria, D. R. Linder, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, H. Gunell, H. E. J. Koskinen, E. Kallio, P. Riihela, T. Säles, W. Schmidt, J. Kozyra, N. Krupp, M. Fränz, J. Woch, J. Luhmann, S. McKenna-Lawlor, C. Mazelle, J.-J. Thocaven, S. Orsini, R. Cerulli-Irelli, M. Mura, M. Milillo, M. Maggi, E. Roelof, P. Brandt, K. Szego, J. D. Winningham, R. A. Frahm, J. Scherrer, J. R. Sharber, P. Wurz, P. Bochsler, Nature, 450, 650-653, 2007.
  162. Investigation of the Influence of Magnetic Anomalies on Ion Distributions at Mars, H. Nilsson, E. Carlsson, H. Gunell, Y. Futaana, S. Barabash, R. Lundin, A. Fedorov, Y. Soobiah, A. Coates, M. Fränz, E. Roussos, Space Sci. Rev., 126, 355, 2006.
  163. Observations of the Martian Subsolar ENA Jet Oscillations, A. Grigoriev, Y. Futaana, S. Barabash, A. Fedorov, Space Sci. Rev., 126, 299, 2006.
  164. IMF Direction Derived from Cycloid-Like Ion Distributions Observed by Mars Express, M. Yamauchi, Y. Futaana, A. Fedorov, E. Dubinin, R. Lundin, J.-A. Sauvaud, D. Winningham, R. Frahm, S. Barabash, M. Holmstrom, J. Woch, M. Fraenz, E. Budnik, H. Borg, J. R. Sharber, A. J. Coates, Y. Soobiah, H. Koskinen, E. Kallio, K. Asamura, H. Hayakawa, C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, A. Grigoriev, P. Wurz, S. Orsini, P. Brandt, S. Mckenna-Lawler, J. Kozyra, J. Luhmann, Space Sci. Rev., 126, 239, 2006.
  165. Energisation of O+ and O+2 Ions at Mars: An Analysis of a 3-D Quasi-Neutral Hybrid Model Simulation, E. Kallio, A. Fedorov, S. Barabash, P. Janhunen, H. Koskinen, W. Schmidt, R. Lundin, H. Gunell, M. Holmström, Y. Futaana, M. Yamauchi, A. Grigoriev, J. D. Winningham, R. Frahm, J. R. Sharber, Space Sci. Rev., 126, 36, 2006.
  166. Direct Measurements of Energetic Neutral Hydrogen in the Interplanetary Medium, A. Galli, P. Wurz, S. Barabash, A. Grigoriev, R. Lundin, Y. Futaana, H. Gunnell, M. Holmström, E. C. Roelof, C. C. Curtis, K. C. Hsieh, A. Fedorov, D. Winningham, R. A. Frahm, R. Cerulli-Irelli, P. Bochsler, N. Krupp, J. Woch, M. Fraenz, ApJ, 644 (2), 1317-1325, 2006.
  167. Ion escape at Mars: Comparison of a 3-D hybrid simulation with Mars Express IMA/ASPERA-3 measurements, E. Kallio, A. Fedorov, E. Budnik, T. Säles, P. Jahaunen, W. Schmidt, H. Koskinen, P. Riihelä, S. Barabash, R. Lundin, M. Holmström, H. Gunell, K. Brinkfeldt, Y. Futaana, H. Andersson, M. Yamauchi, A. Grigoriev, J. -A. Sauvaud, J. -J. Thocaven, J. D. Winningham, R. A. Frahm, J. R. Sharber, J. R. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, J. Kozyra, J. G. Luhmann, E. Roelof, D. Williams, S. Livi, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, S. McKenna-Lawler, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, N. Krupp, J. Woch, M. Fränz, K. Asamura, C. Dierker, Icarus, 182(2), 350-359, 2006.
  168. Energetic Neutral Atoms (ENA) at Mars:Properties of the hydrogen atoms produced upstream of the martian bow shock and implications for ENA sounding technique around non-magnetized planets, E. Kallio, S. Barabash, K. Brinkfeldt, H. Gunell, M. Holmström, Y. Futaana, W. Schmidt, T. Säles, H. Koskinen, P. Riihelä, R. Lundin, H. Andersson, M. Yamauchi, A. Grigoriev, J. D. Winningham, R. A. Frahm, J. R. Sharber, J. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, J. Kozyra, J. G. Luhmann, E. Roelof, D. Williams, S. Livi, P. C:son Brandt, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, J. -A. Saubaud, A. Fedorov, J. -J. Thocaven, S. McKenna-Lawlor, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, N. Krupp, J. Woch, M. Fränz, K. Asamura, C. Dierker, Icarus, 182(2), 448-463, 2006.
  169. First ENA Observations at Mars: Solar-wind ENAs on the nightside, K. Brinkfeldt, H. Gunell, P. C. Brandt, S. Barabash, R. A. Frahm, J. D. Winningham, E. Kallio, M. Holmström, Y. Futaana, A. Ekenbäck, R. Lundin, H. Andersson, M. Yamauchi, A. Grigoriev, J. R. Sharber, J. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, H. Koskinen, T. Säles, P. Riihela, W. Schmidt, J. Kozyra, J. Luhmann, E. Roelof, D. Williams, S. Livi, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, J. -A. Saubaud, A. Fedorov, J. -J. Thocaven, S. McKenna-Lawlor, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, N. Krupp, J. Woch, M. Fraenz, K. Asamura, C. Dierker, Icarus, 182(2), 439-447, 2006.
  170. First ENA Observations at Mars: Charge Exchange ENAs Produced in the Magnetosheath, H. Gunell, K. Brinkfeldt, M. Holmström, S. Barabash, A. Ekenbäk, Y. Futaana, R. Lundin, H. Andersson, M. Yamauchi, A. Grigoriev, P. Brandt, E. Roelof, D. Williams, S. Livi, E. Kallio, T. Säles, P. Riihela, W. Schmidt, J. D. Winningham, R. A. Frahm, J. R. Sharber, J. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, H. Koskinen, J. Kozyra, J. Luhmann, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, J. -A. Saubaud, A. Fedorov, J. -J. Thocaven, S. McKenna-Lawlor, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, N. Krupp, J. Woch, M. Fränz, K. Asamura, C. Dierker, Icarus, 182(2), 431-438, 2006.
  171. Mass composition of the escaping plasma at Mars, E. Carlsson, A. Fedorov, S. Barabash, E. Budnik, A. Grigoriev, H. Gunell, H. Nilsson, J. A. Sauvaud, R. Lundin, Y. Futaana, M. Holmström, H. Andersson, M. Yamauchi, J. D. Winningham, R. A. Frahm, J. R. Sharber, J. Scherrer, A. J. Coates, D. R. Linder, D. O. Kataria, E. Kallio, H. Koskinen, T. Säles, P. Riihela, W. Schmidt, J. Kozyra, J. Luhmann, E. Roerof, D. Williams, S. Livi, C. C. Curtis, K. C. Hsieh, B. R. Sandel, M. Grande, M. Carter, J. -J. Thocaven, S. McKenna-Lawlor, S. Orsini, R. Cerulli-Irelli, M. Maggi, P. Wurz, P. Bochsler, N. Krupp, J. Woch, M. Fraenz, K. Asamura, C. Dierker, Icarus, 182(2), 320-328, 2006.
  172. Energetic Neutral Atom Imaging Mass Spectroscopy of the Moon and Mercury Environments, Y. Kazama, S. Barabash, A. Bhardwaj, K. Asamura, Y. Futaana, M. Holmström, R. Lundin, R. Sridharan, P. Wurz, Adv. Space. Res., 37, 38-44, 2006.
  173. Low Energy Neutral Atom Imaging on the Moon with the SARA Instrument aboard Chandrayaan-1 Mission, A. Bhardwaj, S. Barabash, Y. Futaana, Y. Kazama, K. Asamura, D. McCann, R. Sridharan, M. Homström, P. Wurz, R. Lundin, Journal of Earth System Science, 114, (6), 749-760, 2005.

Conference Proceedings

  • Nakano, S., and Y. Futaana, Identification of signal and noise components in spacecraft neutral particle data using a bi-level mixture model, in 2017 IEEE International Conference on Data Science and Advanced Analytics (DSAA), pp. 487???495, doi:10.1109/DSAA.2017.38, 2017.
  • A. Bhardwaj, M. B. Dhanya, A. Alok, S. Barabash, M. Wieser, Y. Futaana, P. Wurz, A. Vorburger, M. Holmström, C. Lue, Y. Harada, K. Asamura, A new view on the solar wind interaction with the Moon Geoscience Letters, 10.1186/s40562-015-0027-y, 2015.
  • A. Bhardwaj, S. Barabash, M. B. Dhanya, M. Wieser, Y. Futaana, M. Holmström, R. Sridharan, P. Wurz, A. Schaufelberger, and A. Kazushi. Studying the lunar-solar wind interaction with the sara experiment aboard the indian lunar mission chandrayaan-1. AIP Conference Proceedings, 1216(1):518-521, 2010.
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    Papers in Book (Coauthor)

    1. T. Araki, T. Iyemori, M. Nose, T. Wada, Y. Futaana, G. Ueno, T. Kamei, A. Saito, Application of Discovery Science to Solar-Terrestrial Physics, in Lecture Notes in Computer Science, 1532/1998, 566, doi: 10.1007/3-540-49292-5_66, 1998.

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