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Bounding the photon mass with cosmological propagation of fast radio bursts

机译:用快速无线电爆裂的宇宙学繁殖界定光子质量

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摘要

Photon is the fundamental quantum of electromagnetic fields, whose mass,mγ, should be strictly zero in Maxwell's theory. But not all theories adopt this hypothesis. If the rest mass of the photon is not zero, there will be an additional time delay between photons of different frequencies after they travel through a fixed distance. By analyzing the time delay, we can measure or constrain the photon mass. Fast radio bursts (FRBs)—transient radio bursts characterized by millisecond duration and cosmological propagation—are excellent astrophysical laboratories to constrainmγ. In this work we use a catalog of 129 FRBs in a Bayesian framework to constrainmγ. As a result, we obtain a new bound on the photon mass,mγ≤3.1×10?51?kg?1.7×10?15?eV/c2(mγ≤3.9×10?51?kg?2.2×10?15?eV/c2) at the 68%(95%) confidence level. The result represents the best limit purely from kinematic analysis of light propagation. The bound on the photon mass will be tighter in the near future with increment in the number of FRBs, more accurate measurement of the redshift for FRBs, and refinement in the knowledge about the origin of dispersion measures (DMs).
机译:光子是Maxwell理论中的质量,Mγ的电磁场的基本量子,其肿块应该是严格为零。但并非所有理论都采用了这一假设。如果光子的静止质量不为零,则在通过固定距离之后,在不同频率的光子之间存在额外的时间延迟。通过分析时间延迟,我们可以测量或限制光子质量。快速的无线电突发(FRB) - 转发无线电突发以毫秒持续时间和宇宙学繁殖 - 是由约束的优异的天体物理实验室。在这项工作中,我们在贝叶斯框架中使用129 FRB的目录到约束。结果,我们在光子质量上获得了新的界限,Mγ≤3.1×10?51?kg?1.7×10?15?EV / C2(Mγ≤3.9×10?51?kg?2.2×10?15? EV / C2)在68%(95%)的置信水平。结果代表了纯粹的光传播运动分析的最佳限制。光子质量的束缚在不久的将来,在FRB的数量中增加,FRB的数量,更准确地测量FRB的Redshift,以及关于分散措施起源的知识(DMS)的内容。

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