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  1. Mildly relativistic magnetized shocks in electron-ion plasmas - I. Electromagnetic shock structure
  2. Ligorini, A.; Niemiec, J.; Kobzar, O.; Iwamoto, M.; Bohdan, A.; Pohl, M.; Matsumoto, Y.; Amano, T.; Matsukiyo, S.; Esaki, Y.; Hoshino, M.
    Month. Not. Roy. Astr., vol.501, Issue 4, pp.4837-4839, 2021
  3. Collective Thomson scattering in non-equilibrium laser produced two-stream plasmas
  4. Sakai, K.; Isayama, S.; Bolouki, N.; Habibi, M. S.; Liu, Y. L.; Hsieh, Y. H.; Chu, H. H.; Wang, J.; Chen, S. H.; Morita, T.; Tomita, K.; Yamazaki, R.; Sakawa, Y.; Matsukiyo, S.; Kuramitsu, Y.
    Phys. Plasmas, vol.27, Issue 10, article id.103104, 2020
  5. Parametric instabilities in a two ion species plasma as a driver of super Alfvenic waves
  6. Matsukiyo, S.
    J. Phys. Conf. Ser., vol.1620, Issue 1, article id.012013, 2020
  7. PIC simulations of microinstabilities and waves at near-sun solar wind perpendicular shocks: Predictions for Parker Solar Probe and Solar Orbiter
  8. Yang, Z.; Liu, Y. D.; Matsukiyo, S.; Lu, Q.; Guo, F.; Liu, M.; Xie, H.; Gao, X.; Guo, J.
    Astrophys. J. Lett., vol.900, Issue 2, article id.L24(8pp), 2020
  9. Local plasma parameter measurements in colliding laser-produced plasmas for studying magnetic reconnection
  10. Morita, T.; Tomita, K.; Sakai, K.; Takagi, M.; Aihara, K.; Edamoto, M.; Egashira, S.; Higuchi, T.; Ishizaka, N.; Izumi, T.; Kakuchi, S.; Kojima, T.; Kuramitsu, Y.; Matsukiyo, S.; Nakagawa, Y.; Minami, T.; Murakami, H.; Nishioka, Y.; Ota, M.; Sano, T. Sei, S.; Sugiyama, K.; Tanaka, S. J.; Yamazaki, R.; Sakawa, Y.
    High Ene. Dens. Phys., vol.36, pp.100754, 2020
  11. Solar wind parameter and seasonal variation effects on the south atlantic anomaly using Tsyganenko models
  12. Girgis, K. M.; Hada, T.; Matsukiyo, S.
    Earth, Planet. Space, vol.72, Issue 1, article id.100, 2020
  13. PIC simulation of a shock tube: Implications for wave transmission in the heliospheric boundary region
  14. Matsukiyo, S.; Noumi, T.; Zank, G. P.; Washimi, H.; Hada, T.
    Astrophys. J., vol.888, Issue 1, article id.11(9pp), 2020
  15. Heavy ion acceleration by super-Alfvenic waves
  16. Matsukiyo, S.; Akamizu, T.; Hada, T.
    Astrophys. J. Lett., vol.887, Issue 1, article id.L2(4pp), 2019
  17. Mach number and plasma beta dependence of the ion temperature perpendicular to the external magnetic field in the transition region of perpendicular collisionless shocks
  18. Yamazaki,R.; Shinoda,A.; Umeda,T.; Matsukiyo,S.
    AIP Advances, vol.9, Issue 12, id.125010, 2019
  19. PIC simulation of a quasi-parallel collisionless shock: Interaction between upstream waves and backstreaming ions
  20. Otsuka,F.; Matsukiyo,S.; Hada,T.
    High Ene. Dens. Phys., vol.33, pp.100709, 2019
  21. Electron scattering by low-frequency whistler waves at earth's bow shock
  22. Oka, M.; Otsuka, F.; Matsukiyo, S.; Wilson, L. B., III; Argall, M. R.; Amano, T.; Phan, T. D.; Hoshino, M.; Le Contel, O.; Gershman, D. J.; Burch, J. L.; Torbert, R. B.; Dorelli, J. C.; Giles, B. L.; Ergun, R. E.; Russell, C. T.; Lindqvist, P. A
    Astrophys. J., vol.886, Issue 1, article id.53(11pp), 2019
  23. Anomalous plasma acceleration in colliding high-power laser-produced plasmas
  24. Morita,T.; Nagashima,K.; Edamoto,M.; Tomita,K.; Sano,T.; Itadani,Y.; Kumar,R.; Ota,M.; Egashira,S.; Yamazaki,R.; Tanaka,S.J.; Tomita,S.; Toda,H.; Miyata,I.; Kakuchi,S.; Sei,S.; Ishizaka,N.; Matsukiyo,S.; Kuramitsu,Y.; Ohira,Y.; Hoshino,M.; Sakawa,Y.
    Phys. Plasmas, vol.26, Issue 9, pp.090702, 2019
  25. Electron Acceleration at Rippled Low Mach Number Shocks in Merging Galaxy Clusters
  26. Niemiec,J.; Kobzar,O.; Amano,T.; Hoshino,M.; Matsukiyo,S.; Matsumoto,Y.; Pohl,M.
    36th Int'l Cosmic Ray Conf. (ICRC2019), 2019
  27. Collective Thomson scattering measurements of electron feature using stimulated Brillouin scattering in laser-produced plasmas
  28. Bolouki,N.; Sakai,K.; Huang,T.Y.; Isayama,S.; Liu,Y.L.; Peng,C.W.; Chen,C.H.; Khasanah,N.; Chu,H.H.; Moritaka,T.; Tomita,K.; Sato,Y.; Uchino,K.; Morita,T.; Matsukiyo,S.; Hara,Y.; Shimogawara,H.; Sakawa,Y.; Sakata,S.; Kojima,S., Fujioka,S.; Shoji,Y.; Tomiya,S.; Yamazaki,R.; Koenig,M.; Kuramitsu,Y.
    High Ene. Dens. Phys., vol.32, pp.82, 2019
  29. Full particle-in-cell simulation of the interaction between two plasmas for laboratory experiments on the generation of magnetized collisionless shocks with high-power lasers
  30. Umeda,T.; Ymazaki,R.; Ohira,Y.; Ishizaka,N.; Kakuchi,S.; Kuramitsu,Y.; Matsukiyo,S.; Miyata,I.; Morita,T.; Sakawa,Y.; Sano,T.; Sei,S.; Tanaka,S-J.; Toda,H.; Tomita,S.
    Phys. Plasmas, vol.26, Issue 3, pp.032303, 2019
  31. Effect of upstream ULF waves on the energetic ion diffusion at the Earth's foreshock: II. Observations
  32. Kis,A.; Matsukiyo,S.; Otsuka,F.; Hada,T.; Lemperger,I.; Dandouras,I.; Barta,V.; Facsko,G.
    Astrophys. J., vol.853, Issue 2, pp.136, 2018
  33. Diffusive shock acceleration of cosmic rays from two stationary shocks
  34. Nakanotani,M.; Hada,T.; Matsukiyo,S.
    Earth, Planet. Space, vol.70, pp.33, 2018
  35. Effect of upstream ULF waves on the energetic ion diffusion at the Earth's foreshock: I. Theory and simulation
  36. Otsuka,F.; Matsukiyo,S.; Kis,A.; Nakanishi,K.; Hada,T.
    Astrophys. J., vol.853, Issue 2, pp.117, 2018
  37. Electromagnetic structure and electron acceleration in shock-shock interaction
  38. Nakanotani,M.; Matsukiyo,S.; Hada,T.; Mazelle,C.X.
    Astrophys. J., vol.846, Issue 2, pp.113, 2017
  39. Spatial and temporal plasma evolutions of magnetic reconnection in laser produced plasmas
  40. Khasanah,N.; Peng,C.W.; Chen,C.H.; Huang,T.Y.; Bolouki,N.; Moritaka,T.; Hara,Y. Shimogawara,H.; Sano,T.; Sakawa,y.; Sato,Y.; Tomita,K.; Uchino,K.; Matsukiyo,S.; Shoji,Y.; Tomita,S.; Tomiya,S.; Yamazaki,R.; Koenig,M.; Kuramitsu,Y.
    High Ene. Dens. Phys., vol.23, pp.15, 2017
  41. Time evolution of Kelvin-Helmholtz vortices associated with collisionless shocks in laser-produced plasmas
  42. Kuramitsu,Y.; Mizuta,A.; Sakawa,Y.; Tanji,H.; Ide,T.; Sano,T.; Koenig,M.; Ravasio,A.; Pelka,A.; Takabe,H.; Gregory,C.D.; Woolsey,N.; Moritaka,T.; Matsukiyo,S.; Matsumoto,Y.; Ohnishi,N.
    Astrophys. J., vol.828, Issue 2, pp.93, 2016
  43. Model experiment of magnetic field amplification in laser-produced plasmas via the Richtmyer-Meshkov instability
  44. Kuramitsu,Y.; Ohnishi,N.; Sakawa,Y.; Morita,T.; Tanji,H.; Ide,T.; Nishio,K.; Gregory,C.D.; Waugh,J.N.; Booth,N.; Heathcote,R.; Murphy,C.; Gregori,G.; Smallcombe,J.; Barton,C.; Diziere,A.; Koenig,M.; Woolsey,N.; Matsumoto,Y.; Mizuta,A.; Sugiyama,T.; Matsukiyo,S.; Moritaka,T.; Sano,T.; Takabe,H.
    Phys. Plasmas, vol.23, Issue 3, pp.032126, 2016
  45. Thomson scattering measurement of a collimated plasma jet generated by a high-power laser system
  46. Ishikawa,T.; Sakawa,Y.; Morita,T.; Yamaura,Y.; Kuramitsu,Y.; Moritaka,T.; Sano,T.; Shimoda,R.; Tomita,K.; Uchino,K.; Matsukiyo,S.; Mizuta,A.; Ohnishi,N.; Crowston,R.; Woolsey,N.; Doyle,H.; Gregori,G.; Koenig,M.; Michaut,C.; Pelka,A.; Yuan,D.; Li,Y.; Zhang,K.; Zhong,J.; Wang,F.; Takabe,H.
    J. Phys. Conf. Ser., vol.688, pp.012098, 2016
  47. Collective scattering of an incident monochromatic circularly polarized wave in an unmagnetized non-equilibrium plasma
  48. Matsukiyo,S.; Kuramitsu,Y.; Tomita,K.
    J. Phys. Conf. Ser., vol.688, pp.012062, 2016
  49. Spherical shock in the presence of an external magnetic field
  50. Kuramitsu,Y.; Matsukiyo,S.; Isayama,S.; Harada,D.; Oyama,T.; Fujino,R.; Sakawa,Y.; Morita,T.; Yamaura,Y.; Ishikawa,T.; Moritaka,T.; Sano,T.; Tomita,K.; Shimoda,R.; Sato,Y.; Uchino,K.; Pelka,A.; Crowston,R.; Woolsey,N.; Gregori,G.; Koenig,M.; Yuan,D.W.; Yin,C.L.; Li,Y.T.; Zhang,K.; Zhong,J.Y.; Wang,F.L.; Ohnishi,N.; Nagamine,K.; Yoneda,H.; Takabe,H.
    J. Phys. Conf. Ser., vol.688, pp.012056, 2016
  51. Toward the generation of magnetized collisionless shocks with high-power lasers
  52. Shoji,Y.; Yamazaki,R.; Tomita,S.; Kawamura,Y.; Ohira,Y.; Tomiya,S.; Sakawa,Y.; Sano,T.; Hara,Y.; Kondo,S.; Shimogawara,H.; Matsukiyo,S.; Morita,T.; Tomita,K.; Yoneda,H.; Nagamine,K.; Kuramitsu,Y.; Moritaka,T.; Ohnishi,N.; Umeda,T.; Takabe,H.
    Plasma Fusion Res., vol.11, pp.3401031, 2016
  53. Electron acceleration at a high beta and low Mach number rippled shock
  54. Matsukiyo,S.; Matsumoto,Y.
    J. Phys. Conf. Ser., vol.642, pp.012017, 2015
  55. Simulations of pickup ion mediated quasi-perpendicular shocks: Implications for the heliospheric termination shock
  56. Matsukiyo,S.; Scholer,M.
    J. Geophys. Res., vol.119, Issue A4, pp.2388, 2014
  57. Full particle-in-cell simulation of two colliding shocks
  58. Nakanotani,M.; Matsukiyo,S.; Hada,T.
    JPS Conf. Proc., vol.1, pp.015103, 2014
  59. Dynamics and microinstabilities at perpendicular collisionless shock: A comparison of large-scale two-dimensional full particle simulations with different ion to electron mass ratio
  60. Umeda,T.; Kidani,Y,; Matsukiyo,S.; Yamazaki,R.
    Phys. Plasmas, vol.21, Number 2, pp.022102, 2014
  61. Dynamics of energetic electrons in nonstationary quasi-perpendicular shocks
  62. Matsukiyo,S.; Scholer,M.
    J. Geophys. Res., vol.117, Issue A11, CiteID A11105, 2012
  63. A numerical electromagnetic linear dispersion relation for Maxwellian ring-beam velocity distributions
  64. Umeda,T.; Matsukiyo,S.; Amano,T.; Miyoshi,Y.
    Phys. Plasmas, vol.19, Issue 7, pp.072107, 2012
  65. Cyclotron Resonant Interactions in Cosmic Particle Accelerators
  66. Terasawa,T.; Matsukiyo,S.
    Space Sci. Rev., vol.173, Issue 1, pp.623, 2012
  67. Microinstabilities at perpendicular collisionless shocks: A comparison of full particle simulations with different ion to electron mass ratio
  68. Umeda,T.; Kidani,Y.; Matsukiyo,S.; Yamazaki,R.
    Phys. Plasmas, vol.19, Issue 4, pp.042109, 2012
  69. Modified two-stream instability at perpendicular collisionless shocks: Full particle simulations
  70. Umeda,T.; Kidani,Y.; Matsukiyo,S.; Yamazaki,R.
    J. Geophys. Res., vol.117, Issue A3, CiteID A03206, 2012
  71. Relativistic Electron Shock Drift Acceleration in Low Mach Number Galaxy Cluster Shocks
  72. Matsukiyo,S.; Ohira,Y.; Yamazaki,R.; Umeda,T.
    Astrophys. J., vol.742, Issue 1, Article ID 47, 2011
  73. Microstructure of the heliospheric termination shock: Full particle electrodynamic simulations
  74. Matsukiyo,S.; Scholer,M.
    J. Geophys. Res., vol.116, Issue A8, CiteID A08106, 2011
  75. Non-stationarity of the quasi-perpendicular bow shock: comparison between Cluster observations and simulations
  76. Comisel,H.; Scholer,M.; Soucek,J.; Matsukiyo,S.
    Ann. Geophys., vol.29, Issue 2, pp.263-274, 2011
  77. On the reformation at quasi- and exactly perpendicular shocks: Full particle-in-cell simulations
  78. Umeda,T.; Kidani,Y.; Yamao,M.; Matsukiyo,S.; Yamazaki,R.
    J. Geophys. Res., vol.115, Issue A10, CiteID A10250, 2010
  79. Mach Number Dependence of Electron Heating in High Mach Number Quasiperpendicular Shocks
  80. Matsukiyo,S.
    Phys. Plasmas, vol.17, Issue 4, pp.042901, 2010
  81. Relativistic Particle Acceleration in Developing Alfven Turbulence
  82. Matsukiyo,S.; Hada,T.
    Astrophys. J., vol.692, Issue 2, pp.1004-1012, 2009
  83. Parametric instabilities of large-amplitude parallel propagating Alfven waves: 2D PIC simulation
  84. Nariyuki,Y.; Matsukiyo,S.; Hada,T.
    New J. Phys., vol.10, Issue 8, pp.083004, 2008
  85. Pickup protons at quasi-perpendicular shocks: full particle electrodynamic simulations
  86. Matsukiyo,S.; Scholer,M.; Burgess,D.
    Ann. Geophys., vol.25, Issue 1, pp.283-291, 2007
  87. Shock Modification by Cosmic-Ray-Excited Turbulences
  88. Terasawa,T.; Hada,T.; Matsukiyo,S.; Oka,M.; Bamba,A.; Yamazaki,R.
    Prog. Theo. Phys. Suppl., No.169, pp.146-149, 2007
  89. Kinetic effects on the parametric decays of Alfven waves in relativistic pair plasmas
  90. Munoz,V.; Hada,T.; Matsukiyo,S.
    Earth, Plan. Space, vol.58, pp.1213-1217, 2006
  91. On microinstabilities in the foot of high Mach number perpendicular shocks
  92. Matsukiyo,S.; Scholer,M.
    J. Geophys. Res., vol.111, Issue A6, CiteID A06104, 2006
  93. On reformation of quasi-perpendicular collisionless shocks
  94. Matsukiyo,S.; Scholer,M.
    Adv. Space Res., vol.38, Issue 1, pp.57-63, 2006
  95. On Kinetic Structure of Quasi-Perpendicular Collisionless Shocks
  96. Scholer,M.; Matsukiyo,S.
    AIP Conf. Proc., vol.781, pp.22-26, 2005
  97. Disperson relation of finite amplitude Alfven wave in a relativistic electron- positron plasma
  98. Hada,T.; Matsukiyo,S. ; Munoz, V.
    Proc. 12th Int’l Cong. Plasma Phys., 2004
  99. Nonstationarity of quasi-perpendicular shocks: a comparison of full particle simulations with different ion to electron mass ratio
  100. Scholer,M.; Matsukiyo,S.
    Ann. Geophys., vol.22, Issue 7, pp.2345-2353, 2004
  101. Coherent waveforms in the auroral upward current region
  102. Matsukiyo,S.; Treumann,R.A.; Scholer,M.
    J. Geophys. Res., vol.109, Issue A6, CiteID A06212, 2004
  103. Modified two-stream instability in the foot of high Mach number quasi-perpendicular shocks
  104. Matsukiyo,S.; Scholer,M.
    J. Geophys. Res., vol.108, No.A12, pp.SMP19-1, CiteID 1459, 2003
  105. Parametric instabilities of circularly polarized Alfven waves in a relativistic electron-positron plasma
  106. Matsukiyo,S.; Hada,T.
    Phys. Rev. E, vol.67, Issue 4, id.046406, 2003
  107. Quasi-perpendicular shocks: Length scale of the cross-shock potential, shock reformation, and implication for shock surfing
  108. Scholer,M.; Shinohara, I.; Matsukiyo,S.
    J. Geophys. Res., vol.108, Issue A1, pp.SSH4-1, CiteID 1014, 2003
  109. Nonlinear evolution of electromagnetic waves driven by the relativistic ring distribution
  110. Matsukiyo,S.; Hada,T.
    Phys. Plasmas, vol.9, Issue 2, pp.649-661, 2002
  111. Comparison between the Landau and Cyclotron Resonances in the Electron Beam-Plasma Interactions
  112. Matsukiyo,S.; Hada,T.; Nambu,M.; Sakai,J.-I.
    J. Phys. Soc. Japan, vol.68, Issue 3, pp.1049-1053, 1999