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相关论文: Heating and Ionization of the Primordial Intergala…

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The first astrophysical objects shaped the cosmic environment by reionizing and heating the intergalactic medium (IGM). In particular, X-rays are very efficient at heating the IGM before it became completely ionized, an effect that can be…

星系天体物理 · 物理学 2015-12-23 Taeho Ryu , Takamitsu L. Tanaka , Rosalba Perna

Understanding of the role of X-rays for driving the thermal evolution of the intergalactic medium (IGM) at high redshifts is one of important questions in astrophysics. High-mass X-ray binaries (HMXBs) in early stellar populations are prime…

星系天体物理 · 物理学 2017-10-25 Taeho Ryu , Takamitsu L. Tanaka , Rosalba Perna

We compute the expected X-ray diffuse background and radiative feedback on the intergalactic medium (IGM) from X-ray binaries prior and during the epoch of reionization. The cosmic evolution of compact binaries is followed using a…

星系天体物理 · 物理学 2017-05-10 Piero Madau , Tassos Fragos

High-energy emission associated with star formation has been proposed as a significant source of interstellar medium (ISM) ionization in low-metallicity starbursts and an important contributor to the heating of the intergalactic medium…

Observational studies indicate that the intergalactic medium (IGM) is highly ionized up to redshifts just over 6. A number of models have been developed to describe the process of reionization and the effects of the ionizing photons from…

天体物理学 · 物理学 2009-11-07 Aparna Venkatesan , Mark L. Giroux , J. Michael Shull

Due to their long mean free path, X-rays are expected to have an important impact on cosmic reionization by heating and ionizing the IGM on large scales, especially after simulations have suggested that Population III stars may form in…

宇宙学与河外天体物理 · 物理学 2014-08-06 Hao Xu , Kyungjin Ahn , John H. Wise , Michael L. Norman , Brian W. O'Shea

High mass X-ray binaries (HMXBs) may have had a significant impact on the heating of the intergalactic medium in the early universe. Study of HMXBs in nearby, low metallicity galaxies that are local analogues to early galaxies can help us…

高能天体物理现象 · 物理学 2015-06-18 Philip Kaaret

Massive stars at redshifts z > 6 are predicted to have played a pivotal role in cosmological reionization as luminous sources of ultra-violet (UV) photons. However, the remnants of these massive stars could be equally important as X-ray…

宇宙学与河外天体物理 · 物理学 2015-06-12 Chris Power , Gillian F. James , Celine Combet , Graham Wynn

X-rays from High-Mass X-ray Binaries (HMXBs) are likely the main source of heating of the intergalactic medium (IGM) during Cosmic Dawn (CD), before the completion of reionization. This Epoch of Heating (EoH; $z\sim 10-15$) should soon be…

星系天体物理 · 物理学 2022-05-05 Harman Deep Kaur , Yuxiang Qin , Andrei Mesinger , Andrea Pallottini , Tassos Fragos , Antara Basu-Zych

Using a reliably measured intrinsic (i.e. corrected for absorption effects) present-day luminosity function of high-mass X-ray binaries (HMXBs) in the 0.25-2 keV energy band per unit star-formation rate, we estimate the preheating of the…

高能天体物理现象 · 物理学 2017-05-03 Sergey Sazonov , Ildar Khabibullin

By heating the intergalactic medium (IGM) before reionization, X-rays are expected to play a prominent role in the early Universe. The cosmic 21-cm signal from this "Epoch of Heating" (EoH) could serve as a clean probe of high-energy…

宇宙学与河外天体物理 · 物理学 2017-05-31 Arpan Das , Andrei Mesinger , Andrea Pallottini , Andrea Ferrara , John H. Wise

A simple analytical model is used to calculate the X-ray heating of the IGM for a range of black hole masses. This process is efficient enough to decouple the spin temperature of the intergalactic medium from the cosmic microwave background…

天体物理学 · 物理学 2008-11-26 Saleem Zaroubi , Rajat M. Thomas , Naoshi Sugiyama , Joe Silk

Recent work suggests that the first generation of stars, the so-called Population III (Pop III), could have formed primarily in binaries or as members of small multiple systems. Here we investigate the impact of X-ray feedback from…

宇宙学与河外天体物理 · 物理学 2014-11-11 Myoungwon Jeon , Andreas H. Pawlik , Volker Bromm , Milos Milosavljevic

X-rays emitted by high mass X-ray binaries (HMXBs) and supernovae-driven winds in the first galaxies during Cosmic Dawn are expected to warm the intergalactic medium prior to its reionization. While most of the heating will be uniform on…

宇宙学与河外天体物理 · 物理学 2025-09-26 Ka-Hou Leong , Avery Meiksin

We study how X-rays from stellar binary systems and the hot intracluster medium (ICM) affect the radiative cooling rates of gas in galaxies. Our study uses a novel implementation of gas cooling in the moving-mesh hydrodynamics code…

It is well established that between 380000 and 1 billion years after the Big Bang the Inter Galactic Medium (IGM) underwent a "phase transformation" from cold and fully neutral to warm (~10^4 K) and ionized. Whether this phase…

宇宙学与河外天体物理 · 物理学 2015-05-27 I. F. Mirabel , M. Dijkstra , P. Laurent , A. Loeb , J. R. Pritchard

Despite significant progress both observationally and theoretically, the origin of high-ionization nebular HeII emission in galaxies dominated by stellar photoionization remains unclear. Accretion-powered radiation from high-mass X-ray…

The heating of the intergalactic medium in the early, metal-poor Universe may have been partly due to radiation from high mass X-ray binaries (HMXBs). Previous investigations on the effect of metallicity have used galaxies of different…

星系天体物理 · 物理学 2019-11-06 Sam Ponnada , Matthew Brorby , Philip Kaaret

The first stars and quasars are known sources of hard ionizing radiation in the first billion years of the Universe. We examine the joint effects of X-rays and hard UV radiation from such first-light sources on the hydrogen and helium…

宇宙学与河外天体物理 · 物理学 2015-05-28 Aparna Venkatesan , Andrew J. Benson

Observations of the Ly-alpha forest at z~3 reveal an average metallicity Z~0.01 Z_solar. The high-redshift supernovae that polluted the IGM also accelerated relativistic electrons. Since the energy density of the CMB scales as (1+z)^4, at…

天体物理学 · 物理学 2009-10-31 S. Peng Oh
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