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严格限制γ射线暴的偏振对 CPT 破坏。

Strict limit on CPT violation from polarization of γ-ray bursts.

机构信息

Department of Earth and Space Science, Osaka University, Toyonaka 560-0043, Japan.

出版信息

Phys Rev Lett. 2012 Dec 14;109(24):241104. doi: 10.1103/PhysRevLett.109.241104. Epub 2012 Dec 13.

Abstract

We report the strictest observational verification of CPT invariance in the photon sector, as a result of γ-ray polarization measurement of distant gamma-ray bursts (GRBs), which are the brightest stellar-sized explosions in the Universe. We detected γ-ray polarization of three GRBs with high significance levels, and the source distances may be constrained by a well-known luminosity indicator for GRBs. For the Lorentz- and CPT-violating dispersion relation E(±)(2) = p(2) ± 2ξp(3)/M(Pl), where ± denotes different circular polarization states of the photon, the parameter ξ is constrained as |ξ|<O(10(-15)). Barring precise cancellation between quantum gravity effects and dark energy effects, the stringent limit on the CPT-violating effect leads to the expectation that quantum gravity presumably respects the CPT invariance.

摘要

我们报告了在光子领域对 CPT 不变性的最严格观测验证,这是通过对遥远的伽马射线暴(GRB)的γ射线偏振测量得出的,GRB 是宇宙中最亮的恒星大小的爆炸。我们探测到了三个具有高显著水平的 GRB 的γ射线偏振,并且源距离可以通过一个著名的 GRB 光度指示器来限制。对于洛伦兹和 CPT 破坏的色散关系 E(±)(2) = p(2) ± 2ξp(3)/M(Pl),其中 ± 表示光子的不同圆偏振态,参数 ξ 被约束为 |ξ|<O(10(-15))。如果没有量子引力效应和暗能量效应的精确抵消,对 CPT 破坏效应的严格限制导致了对量子引力可能尊重 CPT 不变性的期望。

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