论文标题
旋转玻色子星的多极结构
The multipolar structure of rotating boson stars
论文作者
论文摘要
相对论的多极力矩为表征紧凑的天体物理物体周围的重力场提供了关键成分。它们在对合并二进制系统的轨道演化的描述中起着至关重要的作用,并编码有关二进制组件性质的有价值的信息,这在其重力波排放中留下了可测量的烙印。我们提出了一项有关在大耦合极限下具有四分之一自相互作用的一类任意旋转玻色子恒星的多极结构的新研究,其中这些溶液预计将是稳定的。我们的结果增强并扩展了先前的数值分析,表明即使对于最紧凑的配置,多极结构也会显着偏离Kerr黑洞。我们为对象质量和自旋的功能提供准确的数据,可直接用于构造灵感波形近似值,并执行参数估计并搜索玻色子星星二进制文件。
The relativistic multipole moments provide a key ingredient to characterize the gravitational field around compact astrophysical objects. They play a crucial role in the description of the orbital evolution of coalescing binary systems and encode valuable information on the nature of the binary's components, which leaves a measurable imprint in their gravitational-wave emission. We present a new study on the multipolar structure of a class of arbitrarily spinning boson stars with quartic self-interactions in the large coupling limit, where these solutions are expected to be stable. Our results strengthen and extend previous numerical analyses, showing that even for the most compact configurations the multipolar structure deviates significantly from that of a Kerr black hole. We provide accurate data for the multipole moments as functions of the object's mass and spin, which can be directly used to construct inspiral waveform approximants and to perform parameter estimations and searches for boson star binaries.