论文标题

超出绝热近似超出动态标量的有效效法模型

Effective-action model for dynamical scalarization beyond the adiabatic approximation

论文作者

Khalil, Mohammed, Mendes, Raissa F. P., Ortiz, Néstor, Steinhoff, Jan

论文摘要

在某些标量场扩展到一般相对论中,标量电荷可以在灵感二进制中的紧凑对象上发展,这是一种被称为动力标量的效果。可以使用应用于牛顿后近似中二进制的有效场理论方法对此效果进行建模。过去的分析研究集中在准圆形轨道的绝热(或准平台)情况下。在这项工作中,我们探讨了围绕相标准制度的相过渡的全部动力学演变。这允许通用(偏心)轨道,并在相变期间量化非绝热(例如,振荡)行为。我们还发现,即使在圆形轨道情况下,只有在考虑到完整的动态时,即绝热近似不合适时才能可靠地预测标量的开始。我们的结果铺平了为准确的牛顿后预测,以实现紧凑型二进制的重力波中的动态标量效应。

In certain scalar-field extensions to general relativity, scalar charges can develop on compact objects in an inspiraling binary -- an effect known as dynamical scalarization. This effect can be modeled using effective-field-theory methods applied to the binary within the post-Newtonian approximation. Past analytic investigations focused on the adiabatic (or quasi-stationary) case for quasi-circular orbits. In this work, we explore the full dynamical evolution around the phase transition to the scalarized regime. This allows for generic (eccentric) orbits and to quantify nonadiabatic (e.g., oscillatory) behavior during the phase transition. We also find that even in the circular-orbit case, the onset of scalarization can only be predicted reliably when taking the full dynamics into account, i.e., the adiabatic approximation is not appropriate. Our results pave the way for accurate post-Newtonian predictions for dynamical scalarization effects in gravitational waves from compact binaries.

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