论文标题
从弱到强耦合的重力波的热发射
Thermal Emission of Gravitational Waves from Weak to Strong Coupling
论文作者
论文摘要
我们研究了通过$ \ MATHCAL n $ = 4超对称Yang Mills Matter的热量血浆产生引力波的产生。我们专注于大量颜色限制,$ n_c \ rightarrow \ infty $,并计算出无限大且无限的小值的引力波频谱。在$λ\ rightarrow \ infty $限制中,我们采用量规/重力双重性来通过分析能量量张量的热相关器来计算发射速率。在$λ\ rightarrow 0 $限制中,我们采用最先进的扰动分析来计算完整的领先订单排放率。通过比较这些极限,我们将这种引力波来源引起的光谱的幅度括起来。将我们的结果嵌入到宇宙学的演化模型中,我们发现强耦合频谱与扰动结果的外推到偶联的中间值之间的定性和定量相似性,在适当地重新缩放了有效的自由度。我们评论我们的结果如何帮助更好地理解热物质对重力波的随机谱的贡献。
We study the production of gravitational waves by a thermalized plasma of $\mathcal N$=4 Supersymmetric Yang Mills matter. We focus on the large number of colors limit, $N_c\rightarrow \infty$, and compute the spectrum of gravitational waves both for infinitely large and infinitesimally small values of the 't Hooft coupling constant $λ$. In the $λ\rightarrow \infty$ limit we employ the gauge/gravity duality to compute the emission rate via the analysis of Energy-Momentum tensor thermal correlators. In the $λ\rightarrow 0$ limit we employ state-of-the-art perturbative analyses to calculate the complete leading order emission rate. By comparing these extreme limits, we bracket the magnitude of the spectrum induced by this source of gravitational waves. Embedding our results in a cosmological evolution model, we find qualitative and quantitative similarities between the strong coupling spectrum and the extrapolation of the perturbative results up to an intermediate value of the coupling, after an appropriate re-scaling of the effective number of degrees of freedom. We comment on how our results can help better understand the contribution of thermalized matter to the stochastic spectrum of gravitational waves.