论文标题

评估恒星二进制中的化学均匀进化:电磁意义 - 电离光子,SLSN-I,GRB,IC-BL

Evaluating chemically homogeneous evolution in stellar binaries: Electromagnetic implications -- Ionizing photons, SLSN-I, GRB, Ic-BL

论文作者

Ghodla, Sohan, Eldridge, J. J., Stanway, Elizabeth R., Stevance, Héloïse F.

论文摘要

我们研究了快速旋转引起的化学均匀进化(CHE)的发生,这是由于二进制潮汐强烈和质量积聚引起的。为此,我们概括了Packet(1981)中的关系,以计算次级恒星所需的最小角动量(AM)积聚以体验积聚引起的CHE。与传统上假定的初始质量增加5-10%($ z \ Lessim 0.004 $,$ m \ gtrsim $ 20 m $ _ $ _ {\ odot} $)用于旋转增生器(导致CHE的旋转)可以降至$ \ sim $ $ \ sim $ 2%,而对于某些系统,它可能会大大增加。我们使用\ textsc {bpass}进行人群研究,通过在短期二进制中强烈潮汐的影响下进化的恒星,并解释了增生引起的旋转的更新效果。我们发现,即使在质量转移期间,即使在10%的AM积聚效率下,也是产生同质恒星的主要手段(与潮汐CHE相比)。与潮汐CHE不同,可以看出,由于积聚而产生的CH星可以保留其AM的较大部分直到核心崩溃。因此,我们表明吸积CHE可能是折叠式(Magnetar)形式主义下的grbs,ic-bl(slsn-i,ic-bl)等能量电磁瞬变的重要地层通道,并且单个CH恒星可能导致在各自的地层场景下两种瞬态。最后,我们表明,在当前对CHE的处理下,这种恒星的电离光子的排放率在高金属度上的速度比以前的预期更快。

We investigate the occurrence of rapid-rotation induced chemically homogeneous evolution (CHE) due to strong tides and mass accretion in binaries. To this end, we generalize the relation in Packet (1981) to calculate the minimum angular momentum (AM) accretion required by a secondary star to experience accretion-induced CHE. Contrary to traditionally assumed 5-10 percent accretion of initial mass ($Z \lesssim 0.004$, $M \gtrsim$ 20 M$_{\odot}$) for spinning up the accretor (resulting in CHE) this value can drop to $\sim$ 2 percent for efficient AM accretion while for certain systems it could be substantially larger. We conduct a population study using \textsc{bpass} by evolving stars under the influence of strong tides in short-period binaries and also account for the updated effect of accretion-induced spin-up. We find accretion CHE (compared to tidal CHE) to be the dominant means of producing homogeneous stars even at 10 percent AM accretion efficiency during mass transfer. Unlike tidal CHE, it is seen that CH stars arising due to accretion can retain a larger fraction of their AM till core collapse. Thus we show that accretion CHE could be an important formation channel for energetic electromagnetic transients like GRBs, Ic-BL (SLSN-I, Ic-BL) under the collapsar (magnetar) formalism and a single CH star could lead to both the transients under their respective formation scenario. Lastly, we show that under the current treatment of CHE, the emission rate of ionizing photons by such stars decreases more rapidly at higher metallicities than previously predicted.

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