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We report a Vlasov simulation of cosmic relic neutrinos combined with N-body simulation of cold dark matter in the context of large-scale structure formation in the Universe performed on Fugaku supercomputer.
A Phase-Space Boundary Integration of the Vlasov Equation for Collisionless One-Dimensional Stellar Systems
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Numerical Experiments with a One-Dimensional Gravitational System by a Euler-Type Method
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The Integration of the Vlasov Equation in Configuration Space
C. Z. Cheng and G. Knorr. 1976 · 1976
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T. Fujiwara. 1981 · 1981
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Evidence for Oscillation of Atmospheric Neutrinos
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GRAPE-5: A Special-Purpose Computer for N-Body Simulations
Atsushi Kawai, Toshiyuki Fukushige, Junichiro Makino, and Makoto Taiji. 2000 · 2000
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TreePM: A Code for Cosmological N-Body Simulations
J. S. Bagla. 2002 · 2002
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GOTPM: a parallel hybrid particle-mesh treecode
John Dubinski, Juhan Kim, Changbom Park, and Robin Humble. 2004 · 2003
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Velocity–space structures of distribution function in toroidal ion temperature gradient turbulence
T.-H Watanabe and H Sugama. 2005 · 2005
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Performance tuning of N-body codes on modern microprocessors: I. Direct integration with a hermite scheme on x86_64 architecture
Keigo Nitadori, Junichiro Makino, and Piet Hut. 2006 · 2006
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Conservative global gyrokinetic toroidal full-f five-dimensional Vlasov simulation
Ataru Tanikawa, Kohji Yoshikawa, Keigo Nitadori, and Takashi Okamoto. 2013 · 2012
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K. Yoshikawa, N. Yoshida, and M. Umemura. 2013 · 2013
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Precision reconstruction of the cold dark matter-neutrino relative velocity from N -body simulations
D. Inman, J. D. Emberson, U.-L. Pen, A. Farchi, H.-R. Yu, and J. Harnois-Déraps. 2015 · 2015
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Planck 2015 results. XIII. Cosmological parameters
Planck Collaboration, P. A. R. Ade, N. Aghanim, M. Arnaud, M. Ashdown, J. Aumont, C. Baccigalupi, A. J. Banday, R. B. Barreiro, J. G. Bartlett, and et al. 2016 · 2016
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Yasuhiro Idomura, Masato Ida, Takuma Kano, Nobuyuki Aiba, and Shinji Tokuda. 2008 · 2008
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A conservative high order semi-Lagrangian WENO method for the Vlasov equation
J.-M. Qiu and A. Christlieb. 2010 · 2009
Cited alongside, same era.
Conservative high order semi-Lagrangian finite difference WENO methods for advection in incompressible flow
J.-M. Qiu and C.-W. Shu. 2011 · 2010
Cited alongside, same era.
Massive neutrinos and the non-linear matter power spectrum
S. Bird, M. Viel, and M. G. Haehnelt. 2012 · 2011
Cited alongside, same era.
Cosmological neutrino simulations at extreme scale
J. D. Emberson, Hao-Ran Yu, Derek Inman, Tong-Jie Zhang, Ue-Li Pen, Joachim Harnois-Déraps, Shuo Yuan, Huan-Yu Teng, Hong-Ming Zhu, Xuelei Chen, and Zhi-Zhong Xing. 2017 · 2017
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Simulating the cold dark matter-neutrino dipole with TianNu
D. Inman, H.-R. Yu, H.-M. Zhu, J. D. Emberson, U.-L. Pen, T.-J. Zhang, S. Yuan, X. Chen, and Z.-Z. Xing. 2017 · 2017
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Satoshi Tanaka, Kohji Yoshikawa, Takashi Minoshima, and Naoki Yoshida. 2017 · 2017
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Differential neutrino condensation onto cosmic structure
Hao-Ran Yu, J. D. Emberson, Derek Inman, Tong-Jie Zhang, Ue-Li Pen, Joachim Harnois-Déraps, Shuo Yuan, Huan-Yu Teng, Hong-Ming Zhu, Xuelei Chen, Zhi-Zhong Xing, Yunfei Du, Lilun Zhang, Yutong Lu, and Xiangke Liao. 2017 · 2017
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Reducing noise in cosmological N-body simulations with neutrinos
A. Banerjee, D. Powell, T. Abel, and F. Villaescusa-Navarro. 2018 · 2018
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