Proper Motion and Natal Kick in the Galactic Black Hole X-Ray Binary AT2019wey

Lang Cui, Pengfei Jiang, Tao An, Hongmin Cao, Ning Chang, Giulia Migliori, Marcello Giroletti, Sándor Frey, Jun Yang, Krisztina É. Gabányi, Xiaoyu Hong and Wenda Zhang
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Abstract

Understanding the formation mechanisms of stellar-mass black hole X-ray binaries (BHXBs) remains a fundamental challenge in astrophysics. The natal kick velocities imparted during black hole (BH) formation provide crucial constraints on these formation channels. In this work, we present a new-epoch very long baseline interferometry (VLBI) observation of the Galactic BHXB AT2019wey carried out in 2023. Combining with archival VLBI data from 2020, we successfully measure the proper motion of AT2019wey over a 3 yr timescale, namely, 0.78 ± 0.12 mas yr−1 in R.A. and −0.42 ± 0.07 mas yr−1 in decl. Employing the measured proper motion, we estimate its peculiar velocity and the potential kick velocity (PKV) through Monte Carlo simulations, incorporating uncertainties of its distance and radial velocity. The estimated PKV distributions and height above the Galactic plane suggest that AT2019wey’s BH likely formed through a supernova explosion rather than direct collapse.
银河系黑洞X射线双星AT2019wey的适当运动和原点踢动
了解恒星质量黑洞 X 射线双星(BHXBs)的形成机制仍然是天体物理学的一项基本挑战。黑洞(BH)形成过程中的原生踢速度为这些形成通道提供了重要的约束条件。在这项工作中,我们介绍了 2023 年对银河系黑洞(BHXB)AT2019wey 进行的新波长甚长基线干涉测量(VLBI)观测。结合 2020 年的档案 VLBI 数据,我们成功地测量了 AT2019wey 在 3 年时间尺度上的适当运动,即 R.A. 为 0.78 ± 0.12 mas yr-1,而 decl 为 -0.42 ± 0.07 mas yr-1。利用测量到的适当运动,我们通过蒙特卡洛模拟估算出了它的奇特速度和潜在的踢速度(PKV),并考虑了它的距离和径向速度的不确定性。估计的PKV分布和银河平面上方的高度表明,AT2019wey的BH很可能是通过超新星爆炸而不是直接坍缩形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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