论文标题
中子恒星的连续重力波排放,芯中固定超丝
Continuous gravitational wave emission from neutron stars with pinned superfluids in the core
论文作者
论文摘要
我们研究了固定的超流体成分对旋转中子星的重力波发射的影响。将超流体涡流固定在外部芯(质子可能形成II型超导体的情况下)的通量管是一种可能在内部维持长寿命和非轴对称中子电流的机制,从而破坏了未渗透的液压层状的轴向对称性。我们考虑将诱导的扰动固定在固定的旋转构型上,并确定由于涡流固定在近期的中性恒星恒星内部的磁磁 - 氢动力学模拟所预测的涡流磁场而引起的重力波发射强度的上限。我们估计了来自外部芯中固定的涡度产生的质量和电流多极对重力波发射的贡献,并发现质量四极可能足够大,以使引力波在毫秒脉冲中提供显性的spindown扭矩。
We investigate the effect of a pinned superfluid component on the gravitational wave emission of a rotating neutron star. Pinning of superfluid vortices to the flux-tubes in the outer core (where the protons are likely to form a type-II superconductor) is a possible mechanism to sustain long-lived and non-axisymmetric neutron currents in the interior, that break the axial symmetry of the unperturbed hydrostatic configuration. We consider pinning-induced perturbations to a stationary corotating configuration, and determine upper limits on the strength of gravitational wave emission due to the pinning of vortices with a strong toroidal magnetic field of the kind predicted by recent magneto-hydrodynamic simulations of neutron star interiors. We estimate the contributions to gravitational wave emission from both the mass and current multipole generated by the pinned vorticity in the outer core, and find that the mass quadrupole can be large enough for gravitational waves to provide the dominant spindown torque in millisecond pulsars.