Kantor Elena M, Gusakov Mikhail E, Dommes Vasiliy A
Ioffe Institute, Polytekhnicheskaya 26, 194021 St. Petersburg, Russia.
Phys Rev Lett. 2020 Oct 9;125(15):151101. doi: 10.1103/PhysRevLett.125.151101.
We constrain the parameters of neutron superfluidity in the cores of neutron stars making use of the recently proposed effect of resonance stabilization of r modes. To this end, we, for the first time, calculate the finite-temperature r-mode spectra for realistic models of rotating superfluid neutron stars, accounting for both muons and neutron-proton entrainment in their interiors. We find that the ordinary (normal) r mode exhibits avoided crossings with superfluid r modes at certain stellar temperatures and spin frequencies. Near the avoided crossings, the normal r mode dissipates strongly, which leads to substantial suppression of the r-mode instability there. The extreme sensitivity of the positions of avoided crossings to the neutron superfluidity model allows us to constrain the latter by confronting the calculated spectra with observations of rapidly rotating neutron stars in low-mass x-ray binaries.
我们利用最近提出的r模式共振稳定效应来约束中子星核心中中子超流的参数。为此,我们首次针对旋转超流中子星的实际模型计算了有限温度下的r模式谱,同时考虑了其内部的μ子以及中子 - 质子夹带效应。我们发现,普通(正常)r模式在某些恒星温度和自旋频率下与超流r模式存在避免交叉现象。在避免交叉附近,正常r模式强烈耗散,这导致那里的r模式不稳定性受到显著抑制。避免交叉位置对中子超流模型的极端敏感性使我们能够通过将计算出的谱与低质量X射线双星中快速旋转中子星的观测结果进行对比来约束后者。