论文标题
使用PPTA和Quijote Pulsar Polarimetry搜索黑性波浪
Searching for dark-matter waves with PPTA and QUIJOTE pulsar polarimetry
论文作者
论文摘要
天体物理来源发出的光子的极化可能会改变,因为它们穿过由超光轴突样颗粒(ALP)组成的暗物质培养基。特别是,银河光环中ALP背景的相干振荡引起了局部源(如脉冲星)发出的电磁辐射极化的周期性变化。基于以前的作品,我们基于广义的Lomb-Scargle期间图开发了一种新的,更强大的分析,以在Quijote MFI仪器和20个从Parkes Pulsar Timing Array(PPTA)项目中观察到的螃蟹超新星残留物和20个Galactic Pulsar观察到的螃蟹超新星残留物。我们还仔细考虑了轴心场的随机性质,这在以前的工作中经常被忽略。这种精致的分析导致了轴突 - 光子耦合的最大限制,用于跨越$ 10^{ - 23} \ text {ev} \ seltsim m_a \ sims m_a \ simeSim10^{ - 19} { - 19} \ text {ev} $的各种暗物质质量。最后,我们调查了可能在此质量范围内使用脉冲星偏光法实现的最佳目标以及对轴突暗物质的潜在敏感性。
The polarization of photons emitted by astrophysical sources might be altered as they travel through a dark matter medium composed of ultra light axion-like particles (ALPs). In particular, the coherent oscillations of the ALP background in the galactic halo induce a periodic change on the polarization of the electromagnetic radiation emitted by local sources such as pulsars. Building up on previous works, we develop a new, more robust, analysis based on the generalised Lomb-Scargle periodogram to search for this periodic signal in the emission of the Crab supernova remnant observed by the QUIJOTE MFI instrument and 20 galactic pulsars from the Parkes Pulsar Timing Array (PPTA) project. We also carefully take into account the stochastic nature of the axion field, an effect often overlooked in previous works. This refined analysis leads to the strongest limits on the axion-photon coupling for a wide range of dark matter masses spanning $10^{-23}\text{ eV}\lesssim m_a\lesssim10^{-19} \text{ eV}$. Finally, we survey possible optimal targets and the potential sensitivity to axionic dark-matter in this mass range that could be achieved using pulsar polarimetry in the future.