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Photospheric emission in gamma-ray bursts

机译:伽玛射线爆发的拍摄束缚

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摘要

A major breakthrough in our understanding of gamma-ray bursts (GRB) prompt emission physics occurred in the last few years, with the realization that a thermal component accompanies the over-all nonthermal prompt spectra. This thermal part is important by itself, as it provides direct probe of the physics in the innermost outflow regions. It further has an indirect importance, as a source of seed photons for inverse-Compton scattering, thereby it contributes to the nonthermal part as well. In this short review, we highlight some key recent developments. Observationally, although so far it was clearly identified only in a minority of bursts, there is indirect evidence that a thermal component exists in a very large fraction of GRBs, possibly close to 100%. Theoretically, the existence of a thermal component has a large number of implications as a probe of underlying GRB physics. Some surprising implications include its use as a probe of the jet dynamics, geometry and magnetization.
机译:在过去几年中,我们了解对伽马射线爆发(GRB)迅速发射物理学发生的重大突破,实现了热成分伴随着所有的非热促销谱。 这种热部分本身很重要,因为它在最内部流出区域中提供了物理的直接探针。 进一步具有间接重要性,作为用于反康顿散射的种子光子的源极,因此它也有助于非热部分。 在这次简短的评论中,我们突出了一些关键的最新发展。 虽然到目前为止,但它只是在少数突发中清楚地识别,间接证据表明热部件存在于大部分GRB中,可能接近100%。 从理论上讲,热分量的存在具有大量影响作为基础GRB物理的探针。 一些令人惊讶的含义包括用作射流动力学,几何和磁化的探针。

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