共 2 条
Phenomenology of CR-scattering on pre-existing MHD modes
被引:0
|作者:
Fornieri, Ottavio
[1
]
Gaggero, Daniele
[2
]
Cerri, Silvio Sergio
[3
]
Luque, Pedro De la Torre
[4
]
Gabici, Stefano
[5
]
机构:
[1] Deutsch Elektronen Synchrotron DESY, Platanenallee 6, D-15738 Zeuthen, Germany
[2] Inst Fis Teor UAM CSIC, Campus Cantoblanco, E-28049 Madrid, Spain
[3] Princeton Univ, Dept Astrophys Sci, Princeton, NJ USA
[4] Stockholm Univ, Dept Phys, Oskar Klein Ctr, AlbaNova, SE-10691 Stockholm, Sweden
[5] Univ Paris, CNRS, Astroparticule & Cosmol, F-75006 Paris, France
来源:
37TH INTERNATIONAL COSMIC RAY CONFERENCE, ICRC2021
|
2022年
关键词:
COSMIC-RAY PROPAGATION;
MAGNETOHYDRODYNAMIC TURBULENCE;
INTERSTELLAR TURBULENCE;
ENERGETIC PARTICLES;
PARALLEL;
D O I:
暂无
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
We present the phenomenological implications of the micro-physics of CR diffusion as resulting from particle scattering onto the three modes in which Magneto-Hydro-Dynamics (MHD) cascades are decomposed. We calculate the diffusion coefficients from first principles based on reasonable choices of the physical quantities characterizing the different environments of our Galaxy, namely the Halo and the Warm Ionized Medium, and implement for the first time these coefficients in the DRAGON2 numerical code. Remarkably, we obtain the correct propagated slope and normalization for all the charged species taken into account, without any ad-hoc tuning of the transport coefficients. We show that fast magnetosonic modes dominate CR confinement up to similar to 100 TeV; Alfvenic modes are strongly subdominant due to the anistropy of the cascade (in agreement with previous findings) up to rigidities in the sub-PeV domain, where their contribution may show up as a spectral feature, potentially observable in the upcoming years. We also find that such framework cannot be responsible for CR confinement below similar to 200 GeV, possibly leaving room for an additional confinement mechanism, and that the Kolmogorov-like scaling of the B/C ratio cannot be reproduced. Therefore this scaling might not be the imprint of the pre-exisiting turbulence spectrum.
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