Finite velocity effect of ultralight vector dark matter in pulsar timing arrays
Pulsar timing array (PTA) collaborations have recently reported evidence of the stochastic gravitational waves. In addition to gravitational wave signals from cosmological or astrophysical origins, PTAs are also capable of detecting coherently oscillating ultralight dark matter. This study investigates the PTA response to ultralight vector dark matter, incorporating the realistic finite velocity effects (v ∼ 10<SUP>-3</SUP>) in our galaxy. Using a rigorous calculation framework, we demonstrate that both the timing residual amplitude (for deterministic signals) and the angular correlations (for stochastic backgrounds) depend sensitively on individual pulsar distances. Significantly, we find that the timing residuals are dominated by the Newtonian potential, contradicting prior studies which identified the curvature perturbation and tensor part of metric perturbation as the leading contributions. As expected, the PTA response to vector dark matter exhibits a characteristic anisotropic signature, making it distinguishable from the isotropic signal of scalar dark matter.
展开 ▾超轻矢量暗物质在脉冲星计时阵列中的有限速度效应 · 论文研究了脉冲星计时阵列对超轻矢量暗物质的响应,考虑银河系内有限速度效应,发现定时残差由牛顿势主导且角相关依赖脉冲星距离。
预印本 2024-09-30 · 接收 2026-06-30 · 刊出 2026-08-13 · 收录 2026-08-20