论文标题

在黑洞候选人Maxi J1348-630中发现光学和红外线碟片签名

Discovery of optical and infrared accretion disc wind signatures in the black hole candidate MAXI J1348-630

论文作者

Panizo-Espinar, G., Padilla, M. Armas, Muñoz-Darias, T., Koljonen, K. I. I., Cúneo, V. A., Sánchez-Sierras, J., Sánchez, D. Mata, Casares, J., Corral-Santana, J., Fender, R. P., Jiménez-Ibarra, F., Ponti, G., Steeghs, D., Torres, M. A. P.

论文摘要

Maxi J1348-630是在明亮爆发中发现的低质量X射线二进制二进制。在此事件期间,系统按照标准演变对硬状态和软状态进行采样。我们提出了在非常大的望远镜处使用X射手获得的多个上述光学光谱和近红外光谱。我们的数据集包括在爆发最明亮的阶段以及衰减衰减期间拍摄的光谱。我们研究了主要排放线的演变,特别注意与积聚盘风相关的特征,例如蓝移吸收,宽阔的排放线机翼和平坦的轮廓。在明亮的软中间状态期间,我们发现H-Alpha的H-Alpha的宽阔发射线机翼在H-Beta,Hei-5876,H-5876,H-Alpha和Pa-Beta中的蓝色移动吸收槽中,在〜-500 km/s处。此外,在整个爆发中都可以看到平坦的轮廓。我们将这些可观察的物品解释为系统中存在的感冒(即光向至红外)的特征。我们讨论了风的特性,并将其与其他X射线瞬变中看到的特性进行了比较。特别是,与其他系统相比,我们观察到的风速较低,这可能是相对较低的二元倾斜度的直接结果,如几种可观察到的所示。这项研究加强了以下假设:低质量X射线二进制中的冷风是一种常见特征,并且还可以通过高质量的光学光谱和红外光谱在低倾斜物体中检测到它们。

MAXI J1348-630 is a low mass X-ray binary discovered in 2019 during a bright outburst. During this event, the system sampled both hard and soft states following the standard evolution. We present multi-epoch optical and near-infrared spectroscopy obtained with X-shooter at the Very Large Telescope. Our dataset includes spectra taken during the brightest phases of the outburst as well as the decay towards quiescence. We study the evolution of the main emission lines, paying special attention to the presence of features commonly associated with accretion disc winds, such as blue-shifted absorptions, broad emission line wings and flat-top profiles. We find broad emission line wings in H-alpha during the hard-to-soft transition and blue-shifted absorption troughs at ~-500 km/s in H-beta, HeI-5876, H-alpha and Pa-beta during the bright soft-intermediate state. In addition, flat-top profiles are seen throughout the outburst. We interpret these observables as signatures of a cold (i.e. optical to infrared) accretion disc wind present in the system. We discuss the properties of the wind and compare them with those seen in other X-ray transients. In particular, the wind velocity that we observe is low when compared to those of other systems, which might be a direct consequence of the relatively low binary inclination, as suggested by several observables. This study strengthen the hypothesis that cold winds are a common feature in low mass X-ray binaries and that they can also be detected in low inclination objects via high-quality optical and infrared spectroscopy.

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