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相关论文: The Survival of Multiphase Dusty Clouds in Hot Win…

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Recent years have seen excellent progress in modeling the entrainment of T $\sim$ $10^4$K atomic gas in galactic winds. However, the entrainment of cool, dusty T $\sim$ 10-100K molecular gas, which is also observed outflowing at high…

星系天体物理 · 物理学 2024-04-24 Zirui Chen , S. Peng Oh

We present a suite of high-resolution numerical simulations to study the evolution and survival of dust in hot galactic winds. We implement a novel dust framework in the Cholla hydrodynamics code and use wind tunnel simulations of cool,…

星系天体物理 · 物理学 2024-10-29 Helena M. Richie , Evan E. Schneider , Matthew W. Abruzzo , Paul Torrey

Observational evidence shows that low-redshift galaxies are surrounded by extended haloes of multiphase gas, the so-called 'circumgalactic medium' (CGM). To study the survival of relatively cool gas (T < 10^5 K) in the CGM, we performed a…

星系天体物理 · 物理学 2017-06-28 L. Armillotta , F. Fraternali , J. K. Werk , J. X. Prochaska , F. Marinacci

Galactic and intergalactic flows often exhibit relative motion between the cold dense gas and the hot diffuse medium. Such multiphase flows -- involving gas at different temperatures, densities, and ionization states -- for instance,…

星系天体物理 · 物理学 2025-10-07 Ritali Ghosh , Max Gronke , Prateek Sharma , Alankar Dutta

Cold gas clouds embedded in a hot, turbulent medium are expected to be short-lived due to disruptive hydrodynamic instabilities. However, radiative cooling might allow such clouds to survive and grow. We present 3D \texttt{Athena++}…

星系天体物理 · 物理学 2025-11-17 Ashwin Vergis George , Hitesh Kishore Das , Max Gronke

Efficient thermalization of overlapping supernovae within star-forming galaxies may produce a supernova-heated fluid that drives galactic winds. For fiducial assumptions about the timescale for cloud shredding from high-resolution…

星系天体物理 · 物理学 2017-07-19 Dong Zhang , Todd A. Thompson , Eliot Quataert , Norman Murray

Galactic winds are crucial to the cosmic cycle of matter, transporting material out of the dense regions of galaxies. Observations show the coexistence of different temperature phases in such winds, which is not easy to explain. We present…

Understanding the survival, growth and dynamics of cold gas is fundamental to galaxy formation. While there has been a plethora of work on `wind tunnel' simulations that study such cold gas in winds, the infall of this gas under gravity is…

星系天体物理 · 物理学 2023-02-01 Brent Tan , S. Peng Oh , Max Gronke

We perform two-dimensional and three-dimensional radiation hydrodynamic simulations to study cold clouds accelerated by radiation pressure on dust in the environment of rapidly star-forming galaxies dominated by infrared flux. We utilize…

星系天体物理 · 物理学 2018-02-28 Dong Zhang , Shane W. Davis , Yan-Fei Jiang , James M. Stone

We present three-dimensional magnetohydrodynamic simulations of magnetized gas clouds accelerated by hot winds. We initialize gas clouds with tangled internal magnetic fields and show that this field suppresses the disruption of the cloud:…

星系天体物理 · 物理学 2015-06-23 Michael McCourt , Ryan M. O'Leary , Ann-Marie Madigan , Eliot Quataert

Rapidly outflowing cold H-I gas is ubiquitously observed to be co-spatial with a hot phase in galactic winds, yet the ablation time of cold gas by the hot phase should be much shorter than the acceleration time. Previous work showed…

星系天体物理 · 物理学 2023-11-07 Fernando Hidalgo-Pineda , Ryan Jeffrey Farber , Max Gronke

Astrophysical gases are commonly multiphase and highly turbulent. In this work, we investigate the survival and growth of cold gas in such a turbulent, multi-phase medium using three-dimensional hydrodynamical simulations. Similar to…

星系天体物理 · 物理学 2022-02-16 Max Gronke , S. Peng Oh , Suoqing Ji , Colin Norman

Our three-dimensional hydro-dynamical simulations of starbursts examine the formation of superbubbles over a range of driving luminosities and mass loadings that determine superbubble growth and wind velocity. From this we determine the…

星系天体物理 · 物理学 2016-08-19 Ryan Tanner , Gerald Cecil , Fabian Heitsch

The existence of fast moving, cold gas ubiquitously observed in galactic winds is theoretically puzzling, since the destruction time of cold gas is much smaller than its acceleration time. In previous work, we showed that cold gas can…

星系天体物理 · 物理学 2019-12-11 Max Gronke , S. Peng Oh

Cold atomic and molecular gas are commonly observed in the winds of both external galaxies and the Milky Way, yet the survival and origin of these cool phases within hot galactic winds is poorly understood. To help gain insight into these…

We explore the survival of cool clouds in multi-phase circum-galactic media. We revisit the "cloud crushing problem" in a large survey of simulations including radiative cooling, self-shielding, self-gravity, magnetic fields, and…

星系天体物理 · 物理学 2020-01-08 Zhihui Li , Philip F. Hopkins , Jonathan Squire , Cameron Hummels

Both absorption and emission line studies show that cold gas around galaxies is commonly outflowing at speeds of several hundred km$\,\textrm{s}^{-1}$. This observational fact poses a severe challenge to our theoretical models of galaxy…

星系天体物理 · 物理学 2018-07-25 Max Gronke , S. Peng Oh

The ram-pressure acceleration of cold gas by hot outflows plays a crucial role in the dynamics of multiphase galactic winds. Recent numerical studies incorporating radiative cooling have identified a size threshold for idealized cold clouds…

星系天体物理 · 物理学 2025-12-17 Benedikt S. Seidl , Max Gronke , Ryan Jeffrey Farber , Klaus Dolag

Multiphase outflows, revealed by multi-wavelength observations, are crucial in redistributing gas and metals within and around galaxies. These outflows are often modelled theoretically using wind tunnel simulations of a cold ($\sim 10^4$ K)…

星系天体物理 · 物理学 2025-12-10 Alankar Dutta , Prateek Sharma , Max Gronke

Recent observations suggest that dense gas clouds can survive even in hot galactic winds. Here we show that the inclusion of turbulent densities with different statistical properties has significant effects on the evolution of wind-swept…

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