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首页> 外文期刊>The Astrophysical journal >RESISTIVE SOLUTIONS FOR PULSAR MAGNETOSPHERES
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RESISTIVE SOLUTIONS FOR PULSAR MAGNETOSPHERES

机译:脉冲磁球的电阻解决方案

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The current state of the art in the modeling of pulsar magnetospheres invokes either the vacuum or force-free limits for the magnetospheric plasma. Neither of these limits can simultaneously account for both the plasma currents and the accelerating electric fields that are needed to explain the morphology and spectra of high-energy emission from pulsars. To better understand the structure of such magnetospheres, we combine accelerating fields and force-free solutions by considering models of magnetospheres filled with resistive plasma. We formulate Ohm's law in the minimal velocity fluid frame and construct a family of resistive solutions that smoothly bridges the gap between the vacuum and the force-free magnetosphere solutions. The spin-down luminosity, open field line potential drop, and the fraction of open field lines all transition between the vacuum and force-free values as the plasma conductivity varies from zero to infinity. For fixed inclination angle, we find that the spin-down luminosity depends linearly on the open field line potential drop. We consider the implications of our resistive solutions for the spin-down of intermittent pulsars and sub-pulse drift phenomena in radio pulsars.
机译:脉冲星磁层建模中的当前技术水平引起了磁层等离子体的真空极限或无力极限。这些限制都不能同时说明等离子体电流和加速电场,这是解释脉冲星高能发射的形态和光谱所需的。为了更好地了解此类磁层的结构,我们通过考虑充满电阻性等离子体的磁层模型,结合了加速场和无力解。我们在最小速度流体框架中制定欧姆定律,并构建一系列电阻解决方案,这些解决方案可以平滑地弥合真空和无力磁层解决方案之间的差距。随着等离子体电导率从零变化到无穷大,自旋下降的发光度,开放电场线的电势下降和开放电场线的比例都在真空值和无力值之间转换。对于固定的倾斜角,我们发现向下旋转的光度线性依赖于开放磁场线的电势降。我们考虑了电阻性解决方案对于间歇式脉冲星的降速和无线电脉冲星中亚脉冲漂移现象的影响。

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