首页> 外文期刊>The Astrophysical journal >THE EFFECT OF VACUUM POLARIZATION AND PROTON CYCLOTRON RESONANCES ON PHOTON PROPAGATION IN STRONGLY MAGNETIZED PLASMAS
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THE EFFECT OF VACUUM POLARIZATION AND PROTON CYCLOTRON RESONANCES ON PHOTON PROPAGATION IN STRONGLY MAGNETIZED PLASMAS

机译:真空极化和质子回旋共振对强磁化等离子体中光子传播的影响

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摘要

We consider the effects of vacuum polarization and proton cyclotron resonances on the propagation of radiation through a strongly magnetized plasma. We analyze the conditions under which the photons evolve adiabatically through the resonant density and find that the adibaticity condition is satisfied for most photon energies of interest, allowing for a normal-mode treatment of the photon propagation. We then construct radiative equilibrium atmosphere models of strongly magnetized neutron stars that includes these effects, employing a new numerical method that resolves accurately the sharp changes of the absorption and mode-coupling cross sections at the resonant densities. We show that the resulting spectra are modified by both resonances and are harder at all field strengths than a blackbody at the effective temperature. We also show that the narrow absorption features introduced by the proton cyclotron resonance have small equivalent widths. We discuss the implications of our results for properties of thermal emission from the surfaces of young neutron stars.
机译:我们考虑了真空极化和质子回旋共振对通过强磁化等离子体的辐射传播的影响。我们分析了光子通过共振密度绝热演化的条件,并发现大多数感兴趣的光子能量都满足了平整度条件,从而可以对光子传播进行正常模式处理。然后,我们使用一种新的数值方法来构造包含这些效应的强磁化中子星的辐射平衡大气模型,该方法可以精确地解决共振密度处吸收和模式耦合截面的急剧变化。我们表明,所产生的光谱被两个共振所修饰,并且在所有场强下都比黑体在有效温度下更坚硬。我们还表明,质子回旋共振引入的窄吸收特征具有较小的等效宽度。我们讨论了我们的结果对年轻中子星表面热发射特性的影响。

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