Quasistationary hair for binary black hole initial data in scalar Gauss-Bonnet gravity

IF 5.3 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review D Pub Date : 2025-01-24 DOI:10.1103/physrevd.111.024061
Peter James Nee, Guillermo Lara, Harald P. Pfeiffer, Nils L. Vu
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Abstract

Recent efforts to numerically simulate compact objects in alternative theories of gravity have largely focused on the time-evolution equations. Another critical aspect is the construction of constraint-satisfying initial data with precise control over the properties of the systems under consideration. Here, we augment the extended conformal thin sandwich framework to construct quasistationary initial data for black hole systems in scalar Gauss-Bonnet theory and numerically implement it in the open-source p code. Despite the resulting elliptic system being singular at black hole horizons, we demonstrate how to construct numerical solutions that extend smoothly across the horizon. We obtain quasistationary scalar hair configurations in the test-field limit for black holes with linear/angular momentum as well as for black hole binaries. For isolated black holes, we explicitly show that the scalar profile obtained is stationary by evolving the system in time and compare against previous formulations of scalar Gauss-Bonnet initial data. In the case of the binary, we find that the scalar hair near the black holes can be markedly altered by the presence of the other black hole. The initial data constructed here enable targeted simulations in scalar Gauss-Bonnet simulations with reduced initial transients. Published by the American Physical Society 2025
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高斯-邦纳引力下双黑洞初始数据的准平稳毛发
最近在其他引力理论中对致密物体进行数值模拟的努力主要集中在时间演化方程上。另一个关键方面是构造满足约束的初始数据,并对所考虑的系统的性质进行精确控制。本文对扩展的保形薄夹层框架进行扩充,在标量高斯-博内理论中构造了黑洞系统的准平稳初始数据,并在开放源代码中进行了数值实现。尽管所得到的椭圆系统在黑洞视界上是奇异的,但我们展示了如何构建平滑地跨越视界的数值解。在具有线性/角动量的黑洞和双黑洞的测试场极限下,我们得到了准稳态标量毛构型。对于孤立黑洞,我们明确地表明,通过系统的时间演化得到的标量轮廓是平稳的,并与以前的标量高斯-邦纳初始数据的公式进行了比较。在双星的情况下,我们发现黑洞附近的标量毛会因另一个黑洞的存在而明显改变。本文构建的初始数据可以在标量高斯-博内模拟中进行目标模拟,并减少初始瞬态。2025年由美国物理学会出版
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来源期刊
Physical Review D
Physical Review D 物理-天文与天体物理
CiteScore
9.20
自引率
36.00%
发文量
0
审稿时长
2 months
期刊介绍: Physical Review D (PRD) is a leading journal in elementary particle physics, field theory, gravitation, and cosmology and is one of the top-cited journals in high-energy physics. PRD covers experimental and theoretical results in all aspects of particle physics, field theory, gravitation and cosmology, including: Particle physics experiments, Electroweak interactions, Strong interactions, Lattice field theories, lattice QCD, Beyond the standard model physics, Phenomenological aspects of field theory, general methods, Gravity, cosmology, cosmic rays, Astrophysics and astroparticle physics, General relativity, Formal aspects of field theory, field theory in curved space, String theory, quantum gravity, gauge/gravity duality.
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