论文标题
测试弱的等效原理和Lorentz的不变性,并使用GRB光学余波的多波长极化观测
Testing the Weak Equivalence Principle and Lorentz Invariance with Multiwavelength Polarization Observations of GRB Optical Afterglows
论文作者
论文摘要
违反弱等效原理(WEP)和洛伦兹的不变性都可以产生真空双折射,从而导致来自给定天体物理源线性极化发射的偏振载体的能量依赖性旋转。然而,我们对不同能带中固有极化角的无知阻碍了对双重效应的搜索。考虑从固有极化角以及违反WEP和Lorentz不变性引起的旋转角度对观察到的线性极化角的贡献,并假设固有的极化角度是未知的恒定的,我们同时获得了与Wep和Lorents Invarience的可能偏差的强大界限,从而使差异构成了偏远的偏差,并直接构成了极点,这是对极性的偏离,这是对极性的影响。伽马射线爆发(GRB)020813和GRB 021004。在这里我们表明,在$3σ$的置信度下,参数化后纽顿后参数$γ$值的差异表征了从WEP出发的特征,而差异为$δγ= \ weft(-4.5^{-4.5^{+10.0} $} $} $} $ andy-16.0.0.0.16.0.0.16.0.0.16.0.0.16.0.0.16.0.bastr双重参数$η$量化破碎的lorentz不变性度的限制为$η= \ left(6.5^{+15.0} _ { - 14.0} \ right)\ times10^{ - 7} $。这些是光子扇区中WEP和Lorentz不变性的第一个同时验证。由于此处提供的分析应用于GRB的迅速伽马射线发射中,因此可以预期更严格的限制
Violations of both the weak equivalence principle (WEP) and Lorentz invariance can produce vacuum birefringence, which leads to an energy-dependent rotation of the polarization vector of linearly polarized emission from a given astrophysical source. However, the search for the birefringent effect has been hindered by our ignorance concerning the intrinsic polarization angle in different energy bands. Considering the contributions to the observed linear polarization angle from both the intrinsic polarization angle and the rotation angles induced by violations of the WEP and Lorentz invariance, and assuming the intrinsic polarization angle is an unknown constant, we simultaneously obtain robust bounds on possible deviations from the WEP and Lorentz invariance, by directly fitting the multiwavelength polarimetric data of the optical afterglows of gamma-ray burst (GRB) 020813 and GRB 021004. Here we show that at the $3σ$ confidence level, the difference of the parameterized post-Newtonian parameter $γ$ values characterizing the departure from the WEP is constrained to be $Δγ=\left(-4.5^{+10.0}_{-16.0}\right)\times10^{-24}$ and the birefringent parameter $η$ quantifying the broken degree of Lorentz invariance is limited to be $η=\left(6.5^{+15.0}_{-14.0}\right)\times10^{-7}$. These are the first simultaneous verifications of the WEP and Lorentz invariance in the photon sector. More stringent limits can be expected as the analysis presented here is applied to future multiwavelength polarization observations in the prompt gamma-ray emission of GRB