论文标题
首先使用偏光杜特龙束在存储环中的轴突状颗粒搜索
First Search for Axion-Like Particles in a Storage Ring Using a Polarized Deuteron Beam
论文作者
论文摘要
基于这样的概念,即我们的星系中轴或轴状颗粒(ALP)的局部暗物 - 诱导对核子和核的旋转的耦合(通过后者的电动偶极矩和/或Parmagnetic Axion-Wind效应的电动偶极矩),我们确定了搜索Alps in Pssoce Alps in Pssoce Alps in Pssoce Alps in Pssoce Alps in Pssoce in Psoce in oalps in Pssoce in ins newpe ins newse in ins ins ins ins of soceal in oalps ossecilly and osclion con。基于以前的工作,使我们能够维持存储的Deuteron束的平面偏振几百秒钟,我们在冷却器同步器舒适的首次原理实验中进行了第一个原则证明,以扫描970 MEV/c附近的动量。这需要扫描自旋进动频率。在Deuterons的自旋进动频率与ALP诱导的EDM振荡频率之间的共振下,偏振分量会积聚在环平面中。由于轴突频率未知,因此梁的动量和旋转进动频率被逐渐增加,以搜索共振交叉时会发生的垂直极化变化。在舒适的情况下,使用了四个具有不同极化方向的光束束来确保由于极化进动与轴突/ALP场之间未知的相对相,因此不会错过共振。扫描了121 kHz的自旋进动频率周围1.5 kHz宽度的频率窗口。我们在舒适环上的辐射频线WIEN滤波器的帮助下描述了实验过程和方法。未观察到ALP共振。结果,提供了杜特隆的振荡EDM组件的上限及其轴突耦合常数。
Based on the notion that the local dark-matter field of axions or axion-like particles (ALPs) in our Galaxy induces oscillating couplings to the spins of nucleons and nuclei (via the electric dipole moment of the latter and/or the paramagnetic axion-wind effect), we establish the feasibility of a new method to search for ALPs in storage rings. Based on previous work that allows us to maintain the in-plane polarization of a stored deuteron beam for a few hundred seconds, we performed a first proof-of-principle experiment at the Cooler Synchrotron COSY to scan momenta near 970 MeV/c. This entailed a scan of the spin precession frequency. At resonance between the spin precession frequency of deuterons and the ALP-induced EDM oscillation frequency there will be an accumulation of the polarization component out of the ring plane. Since the axion frequency is unknown, the momentum of the beam and consequently the spin precession frequency were ramped to search for a vertical polarization change that would occur when the resonance is crossed. At COSY, four beam bunches with different polarization directions were used to make sure that no resonance was missed because of the unknown relative phase between the polarization precession and the axion/ALP field. A frequency window of 1.5-kHz width around the spin precession frequency of 121 kHz was scanned. We describe the experimental procedure and a test of the methodology with the help of a radiofrequency Wien filter located on the COSY ring. No ALP resonance was observed. As a consequence an upper limit of the oscillating EDM component of the deuteron as well as its axion coupling constants are provided.