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Anomalous hydrodynamics kicks neutron stars

机译:异常流体动力学使中子星产生反作用

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Observations show that, at the beginning of their existence, neutron stars are accelerated briskly to velocities of up to a thousand kilometers per second. We argue that this remarkable effect can be explained as a manifestation of quantum anomalies on astrophysical scales. To theoretically describe the early stage in the life of neutron stars we use hydrodynamics as a systematic effective-field-theory framework. Within this framework, anomalies of the Standard Model of particle physics as underlying microscopic theory imply the presence of a particular set of transport terms, whose form is completely fixed by theoretical consistency. The resulting chiral transport effects in proto-neutron stars enhance neutrino emission along the internal magnetic field, and the recoil can explain the order of magnitude of the observed kick velocities.
机译:观测表明,中子星在存在之初便被迅速加速到每秒高达一千公里的速度。我们认为,这种显着影响可以解释为天文学尺度上量子异常的表现。为了从理论上描述中子星生命的早期阶段,我们使用流体力学作为系统的有效场理论框架。在此框架内,作为微观理论基础的粒子物理学标准模型的异常暗示着存在着一组特殊的输运项,其形式通过理论上的一致性完全固定了。在原始中子星中产生的手征传输效应增强了沿内部磁场的中微子发射,而后坐力可以解释观测到的突跳速度的数量级。

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