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相关论文: But What About... Cosmic Rays, Magnetic Fields, Co…

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Cosmic rays (CRs) play a decisive role within our own Galaxy. They provide partial pressure support against gravity, they trace past energetic events such as supernovae, and they reveal the underlying structure of the baryonic matter…

天体物理学 · 物理学 2009-11-11 Torsten A. Ensslin , Christoph Pfrommer , Volker Springel , Martin Jubelgas

We investigate the impact of cosmic rays (CR) and different modes of CR transport on the properties of Milky Way-mass galaxies in cosmological magneto-hydrodynamical simulations in the context of the AURIGA project. We systematically study…

星系天体物理 · 物理学 2020-07-15 Tobias Buck , Christoph Pfrommer , Rüdiger Pakmor , Robert J. J. Grand , Volker Springel

The physics of magnetic fields ($\textbf{B}$) and cosmic rays (CRs) have recently been included in simulations of galaxy formation. However, significant uncertainties remain in how these components affect galaxy evolution. To understand…

During the last decade, cosmological simulations have managed to reproduce realistic and morphologically diverse galaxies, spanning the Hubble sequence. Central to this success was a phenomenological calibration of the few included feedback…

Understanding the physical mechanisms that control galaxy formation is a fundamental challenge in contemporary astrophysics. Recent advances in the field of astrophysical feedback strongly suggest that cosmic rays (CRs) may be crucially…

高能天体物理现象 · 物理学 2023-10-10 Mateusz Ruszkowski , Christoph Pfrommer

Many recent numerical studies have argued that cosmic rays (CRs) from supernovae (SNe) or active galactic nuclei (AGN) could play a crucial role in galaxy formation, in particular by establishing a CR-pressure dominated circum-galactic…

星系天体物理 · 物理学 2023-08-29 Philip F. Hopkins , Iryna S. Butsky , Suoqing Ji , Dusan Keres

Feedback mediated by cosmic rays (CRs) is an important process in galaxy formation. Because CRs are long-lived and because they are transported along magnetic field lines independently of any gas flow, they can efficiently distribute their…

星系天体物理 · 物理学 2022-03-24 Timon Thomas , Christoph Pfrommer , Rüdiger Pakmor

We investigate how cosmic rays (CRs) affect thermal and hydrostatic stability of circumgalactic (CGM) gas, in simulations with both CR streaming and diffusion. Local thermal instability can be suppressed by CR-driven entropy mode…

星系天体物理 · 物理学 2023-05-25 Tsun Hin Navin Tsung , S. Peng Oh , Chad Bustard

Energetic nonthermal particles (cosmic rays, CRs) are accelerated in supernova remnants, relativistic jets and other astrophysical objects. The CR energy density is typically comparable with that of the thermal components and magnetic…

高能天体物理现象 · 物理学 2015-06-15 A. M. Bykov , A. Brandenburg , M. A. Malkov , S. M. Osipov

Context: Molecular data of extreme environments, such as Arp 220, but also NGC 253, show evidence for extremely high cosmic ray (CR) rates (10^3-10^4 * Milky Way) and mechanical heating from supernova driven turbulence. Aims: The…

宇宙学与河外天体物理 · 物理学 2015-05-20 R. Meijerink , M. Spaans , A. F. Loenen , P. P. van der Werf

We explore the impact of cosmic rays (CRs) on cosmological adaptive-mesh refinement simulations of a forming 10^12 Msolar halo, focusing on the circumgalactic medium (CGM), and its resulting low-redshift structure and composition. In…

星系天体物理 · 物理学 2015-12-23 Munier Salem , Greg L. Bryan , Lauren Corlies

In models of galaxy formation, feedback driven both by supernova (SN) and active galactic nucleus (AGN) is not efficient enough to quench star formation in massive galaxies. Models of smaller galaxies have suggested that cosmic rays (CRs)…

星系天体物理 · 物理学 2018-05-02 Akimi Fujita , Mordecai-Mark Mac Low

Using high-resolution simulations with explicit treatment of stellar feedback physics based on the FIRE (Feedback in Realistic Environments) project, we study how galaxy formation and the interstellar medium (ISM) are affected by magnetic…

The cataclysmic explosions of massive stars as supernovae are one of the key ingredients of galaxy formation. However, their evolution is not well understood in the presence of magnetic fields or cosmic rays (CRs). We study the expansion of…

We investigate the effects of cosmic ray (CR) dynamics on cold, dense clouds embedded in a hot, tenuous galactic halo. If the magnetic field does not increase too much inside the cloud, the local reduction in Alfv\'en speed imposes a…

高能天体物理现象 · 物理学 2017-01-25 Joshua Wiener , S. Peng Oh , Ellen G. Zweibel

Active galactic nuclei (AGN) provide energetic feedback necessary to `turn off' star formation in high-mass galaxies (M$_{\rm halo} \geq $ 10$^{12.5}$ M$_{\odot}$, $10.4 \leq \log(\frac{M_*}{M_\odot}) \leq 11$) as observed. Cosmic rays…

星系天体物理 · 物理学 2026-04-14 Charvi Goyal , Sam B. Ponnada , Philip F. Hopkins , Sarah Wellons , Jose A. Benavides , Kung-Yi Su

Galactic cosmic rays (CRs) play a crucial role in galaxy formation and evolution by altering gas dynamics and chemistry across multiple scales. Typical numerical simulations of CR transport assume a constant diffusion coefficient for the…

星系天体物理 · 物理学 2025-10-16 Sarah Thiele , Romain Teyssier

We calculate the diffusion coefficients of charged cosmic rays (CR) propagating in regular and turbulent magnetic fields. If the magnetic field is dominated by an isotropic turbulent component, we find that CRs reside too long in the…

高能天体物理现象 · 物理学 2018-07-24 G. Giacinti , M. Kachelriess , D. V. Semikoz

Cosmic rays (CRs) can significantly impact dense molecular clouds in galaxies, heating the interstellar medium (ISM) and altering its chemistry, ionization, and thermal properties. Their influence is particularly relevant in environments…

星系天体物理 · 物理学 2026-05-20 E. Koutsoumpou , J. A. Fernández-Ontiveros , K. M. Dasyra , L. Spinoglio

We perform zoom-in cosmological simulations of a suite of dwarf galaxies, examining the impact of cosmic-rays generated by supernovae, including the effect of diffusion. We first look at the effect of varying the uncertain cosmic ray…

星系天体物理 · 物理学 2016-07-27 Jingjing Chen , Greg L. Bryan , Munier Salem