论文标题
散射中的相对熵和S-Matrix Bootstrap
Relative entropy in scattering and the S-matrix bootstrap
论文作者
论文摘要
我们考虑量子场理论中2-2散射中的纠缠度量,重点是区分两个不同密度矩阵的相对熵。在几种情况下,研究了相对熵,其中包括$ ϕ^4 $理论,手性扰动理论($χPT$),描述了II型SuperString理论中的Pion散射和Dilaton散射。我们使用已知边界在大规模QFT中的弹性差分截面上获得了相对熵的高能量。在$χPT$中,接近阈值的相对熵就散射长度的比率而言具有简单的表达式。在某些情况下,发现相对熵的相对熵超出和高于通常的阳性。然后,我们求助于在倾斜散射的背景下对S-矩阵引导程序的最新数值研究。通过施加这些标志限制和$ρ$共振,我们发现对允许的S-矩阵有限制。通过使用相对熵进行假设检验,我们隔离了两组居住在边界上的S-膜,它们的散射长度可与实验相当,但其中一个远离1循环$χpt$ adler Zeros。我们使用涉及扩展的mandelstam区域内的阳性和弹性单位性的想法进行初步分析,以进一步限制允许的空间。
We consider entanglement measures in 2-2 scattering in quantum field theories, focusing on relative entropy which distinguishes two different density matrices. Relative entropy is investigated in several cases which include $ϕ^4$ theory, chiral perturbation theory ($χPT$) describing pion scattering and dilaton scattering in type II superstring theory. We derive a high energy bound on the relative entropy using known bounds on the elastic differential cross-sections in massive QFTs. In $χPT$, relative entropy close to threshold has simple expressions in terms of ratios of scattering lengths. Definite sign properties are found for the relative entropy which are over and above the usual positivity of relative entropy in certain cases. We then turn to the recent numerical investigations of the S-matrix bootstrap in the context of pion scattering. By imposing these sign constraints and the $ρ$ resonance, we find restrictions on the allowed S-matrices. By performing hypothesis testing using relative entropy, we isolate two sets of S-matrices living on the boundary which give scattering lengths comparable to experiments but one of which is far from the 1-loop $χPT$ Adler zeros. We perform a preliminary analysis to constrain the allowed space further, using ideas involving positivity inside the extended Mandelstam region, and elastic unitarity.