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首页> 外文期刊>The Astrophysical journal >PHOTON EMISSIVITY OF THE ELECTROSPHERE OF BARE STRANGE STARS
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PHOTON EMISSIVITY OF THE ELECTROSPHERE OF BARE STRANGE STARS

机译:裸星恒星电子的光子发射率

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摘要

We consider the spectrum, emissivity, and flux of the electromagnetic radiation emitted by the thin electron layer (the electrosphere) at the surface of a bare strange star. In particular, we carefully consider the effect of the multiple and uncorrelated scattering on the radiation spectrum (the Landau-Pomeranchuk-Migdal effect), together with the effect of the strong electric field at the surface of the star. The presence of the electric field strongly influences the radiation spectrum emitted by the electrosphere. All the radiation properties of the electrons in the electrosphere essentially depend on the value of the electric potential at the quark star surface. The effect of the multiple scattering, which strongly suppresses radiation emission, is important only for the dense layer of the electrosphere situated near the star's surface and only for high values of the surface electric potential of the star. Hence a typical bremsstrahlung radiation spectrum, which could extend to very low frequencies, could be one of the main observational signatures even for low-temperature quark stars.
机译:我们考虑了由稀薄的裸星表面上的薄电子层(电球)发出的电磁辐射的光谱,发射率和通量。特别是,我们仔细考虑了多重和不相关的散射对辐射光谱的影响(Landau-Pomeranchuk-Migdal效应),以及恒星表面强电场的影响。电场的存在强烈影响电球发射的辐射光谱。电球中电子的所有辐射特性基本上取决于夸克星表面的电势值。强烈抑制辐射发射的多重散射效应仅对位于恒星表面附近的电球致密层非常重要,而对于恒星的高表面电势则很重要。因此,即使对于低温夸克星,典型的致辐射光谱也可以扩展到非常低的频率,可能是主要的观测特征之一。

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