论文标题
GRMHD超越Kerr:薄磁盘的危害代码扩展到非kerr spaceTime
GRMHD beyond Kerr: An extension of the HARM code for thin disks to non-Kerr spacetimes
论文作者
论文摘要
近来,新的和改进的探测器和望远镜,基于黑洞的一般相对性测试已激增。大多数带有强场签名的辐射的建模是对可能违反一般相对性的强大和准确限制的最重要性。作为第一步,本文介绍了薄积聚磁盘的一般相对论磁流失动力学模拟的扩展,以扩展到参数变形的黑洞,从而概括了Kerr溶液。该扩展名基于\ textsc {harmpi},这是\ textsc {harm}代码系列的公开成员,并使用现象学指标来研究远离Kerr的参数偏差。扩展模型用于研究磁盘结构,稳定性和辐射效率。我们还在简化的场景中计算了Fe K $α$ profiles,并为未来提供前景。
Black hole based tests of general relativity have proliferated in recent times with new and improved detectors and telescopes. Modelling of the black hole neighborhood, where most of the radiation carrying strong-field signature originates, is of utmost importance for robust and accurate constraints on possible violations of general relativity. As a first step, this paper presents the extension of general relativistic magnetohydrodynamic simulations of thin accretion disks to parametrically deformed black holes that generalize the Kerr solution. The extension is based on \textsc{harmpi}, a publicly available member of the \textsc{harm} family of codes, and uses a phenomenological metric to study parametric deviations away from Kerr. The extended model is used to study the disk structure, stability, and radiative efficiency. We also compute the Fe K$α$ profiles in simplified scenarios and present an outlook for the future.