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Extreme Plasmas Near Pulsars and Strange Stars

机译:Pulsars附近的极端等离子体和奇怪的恒星

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Pulsars are fast rotating neutron stars with extremely strong magnetic fields (~ 10~9 - 10~(13) G) at their surface. Current models for the generation of coherent radio emission of pulsars require formation of electron-positron pairs in pulsar magnetospheres. Such pair plasma may be created via conversion of γ-rays into electron-positron pairs in a strong magnetic field. Generation of γ-rays and creation of pair plasma in the magnetospheres of pulsars are discussed. Plasma instabilities in the magnetized pair plasma are reviewed. Bare strange stars, which are entirely made of deconfined quarks, may be extremely powerful sources of pair plasma. In this case, electron-positron pairs are created in a thin layer with a very strong electric field at the quark surface. The luminosity of a bare strange star in pairs is a function of the surface temperature, and it may be as high as ~ 10~(51) - 10~(52) ergs s~(-1) at the moment of the strange star formation when the surface temperature may be ~ a few * 10~(10) K or even higher. Creation of electron-positron pairs at the surface of bare strange stars and physical processes in the outflowing pair plasma are discussed.
机译:Pulsars在其表面上具有极强的磁场(〜10〜9-10〜(13)克)的快速旋转中子恒星。目前用于产生脉冲条的相干无线电发射的模型需要在脉冲磁体中形成电子电极对。可以通过将γ射线转换为强磁场中的电子电极对的γ射线来产生这种对等离子体。讨论了在脉冲星的磁光液中产生γ射线和对等离子体的产生。综述了磁化对等离子体中的等离子体稳定性。完全由Deconfined夸克制成的裸露奇怪的恒星可能是对等离子的极其强大的来源。在这种情况下,在透明层的薄层中以极强电场的薄层产生电子 - 正电子对。裸奇怪的星的亮度成对是表面温度的函数,它可能高达〜10〜(51) - 10〜(52)ergs s〜(-1)在陌生的星星的时刻当表面温度可以是〜几×10〜(10)k甚至更高时形成。讨论了裸奇异恒星表面的电子正电子对和外流对等离子体的物理过程。

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