论文标题
脉冲星时噪声的随机过程:内部和外部扭矩的波动
Stochastic processes for pulsar timing noise: fluctuations in the internal and external torques
论文作者
论文摘要
年轻的脉冲星偏离了两种非确定性现象的完全规律的旋转:冲动的故障和时机噪声。这两种现象本身都是有趣的,并且可以提供对中子星的超流体特性的见解,但它们也充当了高精度脉冲星时间和重力波实验的障碍。我们研究了一个最小的随机模型,以描述多组分中子星的旋转,内部和外部扭矩都有波动。可以通过分析获得此类模型的功率谱密度和时序噪声强度,并与PULSAR定时观察运动的已知结果进行比较。特别是,功率谱密度的平坦区域的存在可以解释为内部超流体成分存在的标志。我们还通过脉冲星的旋转参数(或特征年龄)来得出定时噪声强度的预期缩放。因此,当前的框架提供了一个理论指南,可以解释单个脉冲星和脉冲星人群中观察到的正时噪声的特征。
Young pulsars deviate from a perfectly regular spin-down by two non-deterministic phenomena: impulsive glitches and timing noise. Both phenomena are interesting per se, and may provide insights into the superfluid properties of neutron stars, but they also act as a barrier to high-precision pulsar timing and gravitational wave experiments. We study a minimal stochastic model to describe the spin-down of a multicomponent neutron star, with fluctuations in both the internal and external torques. The power spectral density and timing noise strength of this kind of model can be obtained analytically, and compared with known results from pulsar timing observational campaigns. In particular, the presence of flat regions of the power spectral density can be interpreted as a signature of the presence of internal superfluid components. We also derive the expected scaling of the timing noise strength with the pulsar's rotational parameters (or characteristic age). Therefore, the present framework offers a theoretical guideline to interpret the observed features of timing noise in both single pulsars and across pulsar population.