论文标题
超级流体氦3的均匀进动域-3
Axion wind detection with the homogeneous precession domain of superfluid helium-3
论文作者
论文摘要
轴和轴状颗粒可能会将核自旋融为一体,例如弱振荡的有效磁场“轴向风”。现有的提案,用于检测暗物质剥削核磁共振(NMR)的轴突风,并旨在检测当轴风在极化材料样品中振奋的螺旋旋转时产生的小横向场。我们将一项新提案描述为使用超氟-3的均质进动域(HPD)作为检测介质,其中轴突风的效果是大振幅NMR信号的进液频率的小变化。我们认为,这种设置可以同时提供多个轴突质量的宽带检测,并且通过利用读数阶段的精度频率计量学来利用精度频率计量学,对其他轴线风实验具有竞争性敏感性,例如Casper-wind的质量。
Axions and axion-like particles may couple to nuclear spins like a weak oscillating effective magnetic field, the "axion wind." Existing proposals for detecting the axion wind sourced by dark matter exploit analogies to nuclear magnetic resonance (NMR) and aim to detect the small transverse field generated when the axion wind resonantly tips the precessing spins in a polarized sample of material. We describe a new proposal using the homogeneous precession domain (HPD) of superfluid helium-3 as the detection medium, where the effect of the axion wind is a small shift in the precession frequency of a large-amplitude NMR signal. We argue that this setup can provide broadband detection of multiple axion masses simultaneously, and has competitive sensitivity to other axion wind experiments such as CASPEr-Wind at masses below $10^{-7}$ eV by exploiting precision frequency metrology in the readout stage.