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相关论文: Two Numerical Methods for the 3D Anisotropic Propa…

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Anisotropic diffusion is imperative in understanding cosmic ray diffusion across the Galaxy, the heliosphere, and the interplay of cosmic rays with the Galactic magnetic field. This diffusion term contributes to the highly stiff nature of…

高能天体物理现象 · 物理学 2023-08-09 Pranab J. Deka , Ralf Kissmann , Lukas Einkemmer

Galactic transport models for cosmic rays involve the diffusive motion of these particles in the interstellar medium. Due to the large-scale structured galactic magnetic field this diffusion is anisotropic with respect to the local field…

高能天体物理现象 · 物理学 2013-06-07 Frederic Effenberger , Horst Fichtner , Klaus Scherer , Ingo Büsching

In the standard picture of cosmic ray transport the propagation of charged cosmic rays through turbulent magnetic fields is described as a random walk with cosmic rays scattering on magnetic field turbulence. This is in good agreement with…

高能天体物理现象 · 物理学 2021-07-08 Marco Kuhlen , Philipp Mertsch , Vo Hong Minh Phan

Recent studies have shown that the anisotropy is of great value to decipher cosmic rays' origin and propagation. We have built an unified scenario to describe the observations of the energy spectra and the large-scale anisotropy and called…

高能天体物理现象 · 物理学 2024-02-29 Ai-feng Li , Qiang Yuan , Wei Liu , Yi-qing Guo

In the standard diffusive picture for transport of cosmic rays (CRs), a gradient in the CR density induces a typically small, dipolar anisotropy in their arrival directions. This has been widely advertised as a tool for finding nearby…

高能天体物理现象 · 物理学 2015-01-15 Philipp Mertsch , Stefan Funk

The arrival directions of Galactic cosmic rays exhibit anisotropies up to the level of one per-mille over various angular scales. Recent observations of TeV-PeV cosmic rays show that the dipole anisotropy has a strong energy dependence with…

高能天体物理现象 · 物理学 2019-05-22 Markus Ahlers

In our previous work, we have investigated Galactic cosmic ray (GCR) spectra and anisotropy from 100 GeV to PeV, under anisotropic propagation model with axisymmetric distributed galactic sources. Numerous observational evidence have…

高能天体物理现象 · 物理学 2024-12-24 Aifeng Li , Zhaodong Lv , Wei Liu , Yiqing Guo , Fangheng Zhang

Numerical modeling of galactic cosmic rays (GCRs) penetration through the heliosphere to the vicinity of the Sun is considered. Galactic cosmic rays are charged particles with energies exceeding 10 MeV/nucl., originating from far beyond the…

高能天体物理现象 · 物理学 2025-09-04 D. A. Shestakov , V. V. Izmodenov

The distribution of arrival directions of cosmic rays is remarkably isotropic, which is a consequence of their repeated scattering in magnetic fields. Yet, high-statistics observatories like IceCube and HAWC have revealed the presence of…

高能天体物理现象 · 物理学 2019-12-04 Philipp Mertsch , Markus Ahlers

The very high energy (VHE) emission of the Central Molecular Zone (CMZ) is rarely modelled in 3D. Most approaches describe the morphology in 1D or simplify the diffusion to the isotropic case. In this work we show the impact of a realistic…

高能天体物理现象 · 物理学 2024-04-19 J. Dörner , J. Becker Tjus , P. -S. Blomenkamp , H. Fichtner , A. Franckowiak , E. M. Zaninger

Using a three-component, multi-scale diffusion model, we show that the cosmic-ray (CR) proton and helium spectra and the dipole anisotropy can be explained with reasonable parameters. The model includes a nearby source associated with the…

高能天体物理现象 · 物理学 2022-03-02 Yiran Zhang , Siming Liu , Houdun Zeng

Recently, Zhang & Liu (2024) proposed a turbulent convection model for multiscale anisotropies of cosmic rays (CRs), with an assumption of isotropic diffusion such that the anisotropies are statistically isotropic. However, this assumption…

高能天体物理现象 · 物理学 2025-06-26 Yiran Zhang , Siming Liu

We argue that the diffusion of cosmic rays in the Galactic magnetic field has to be strongly anisotropic. As a result, the number of CR sources contributing to the local CR flux is reduced by a factor $\sim 200$. The CR density is therefore…

高能天体物理现象 · 物理学 2019-05-22 M. Kachelriess

We present a numerical algorithm for the incorporation of the active cosmic ray transport, into the ZEUS-3D magnetohydrodynamical code. The cosmic ray transport is described by the diffusion-advection equation. The applied form of the…

天体物理学 · 物理学 2009-11-10 M. Hanasz , H. Lesch

The propagation of cosmic rays (CRs) in turbulent interstellar magnetic fields is typically described as a spatial diffusion process. This formalism predicts only a small deviation from an isotropic CR distribution in the form of a dipole…

高能天体物理现象 · 物理学 2014-01-22 Markus Ahlers

Under nonuniform convection, the distribution of diffusive particles can exhibit dipole and quadrupole anisotropy induced by the fluid inertial and shear force, respectively. These convection-related anisotropies, unlike the Compton-Getting…

高能天体物理现象 · 物理学 2022-10-26 Yiran Zhang , Siming Liu , Dejin Wu

Analyses of TeV-PeV cosmic ray (CR) diffusion around their sources usually assume either isotropic diffusion or anisotropic diffusion due to the regular Galactic magnetic field. We show that none of them are adequate on distances smaller…

高能天体物理现象 · 物理学 2013-07-29 G. Giacinti , M. Kachelriess , D. V. Semikoz

The arrival directions of TeV-PeV cosmic rays are remarkably uniform due to the isotropization of their directions by scattering on turbulent magnetic fields. Small anisotropies can exist in standard diffusion models, however, only on the…

高能天体物理现象 · 物理学 2022-03-14 Marco Kuhlen , Vo Hong Minh Phan , Philipp Mertsch

Recently studies of the dipole anisotropy in the arrival directions of Galactic cosmic rays indicate that the TeV-PeV dipole anisotropy amplitude is not described by a simple power law, moreover a rapid phase change exists at an energy of…

高能天体物理现象 · 物理学 2019-01-03 Xiaobo Qu

We show that the large-scale cosmic ray anisotropy at ~10 TeV can be explained by a modified Compton-Getting effect in the magnetized flow field of old supernova remnants. This approach suggests an optimum energy scale for detecting the…

高能天体物理现象 · 物理学 2015-06-05 P. L. Biermann , J. K. Becker , E. -S. Seo , M. Mandelartz
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