首页> 外文学位 >A test of CPT and Lorentz symmetry using a potassium-helium-3 co-magnetometer.
【24h】

A test of CPT and Lorentz symmetry using a potassium-helium-3 co-magnetometer.

机译:使用钾氦3磁力计测试CPT和洛伦兹对称性。

获取原文
获取原文并翻译 | 示例

摘要

A K-3He co-magnetometer has been developed for a test of Lorentz and CPT symmetry. Polarized K vapor forms a spin-exchange relaxation-free (SERF) magnetometer that has record sensitivity of about 1 fT/ Hz . The polarized 3He effectively suppresses sensitivity to the magnetic fields and gradients. Together, the K-3He co-magnetometer retains sensitivity to anomalous, CPT- and Lorentz-violating fields that couple to electron and nuclear spins differently than a normal magnetic field. Data over the course of 15 months provide upper limits on the coupling energy of a CPT-violating field to neutron spin, b˜n 1.4 x 10-31 GeV, to proton spin, b˜p 4.4 x 10-30 GeV, and to electron spin, b˜e 1.0 x 10-28 GeV. These limits are consistent with the existing limits of b˜n 1.1 x 10-31 GeV (Bear et al., 2002) and b˜ e 3.0 x 10-29 GeV (Heckel et al., 2000). The proton sensitivity is better than the published limit of b˜p 1.8 x 10-27 GeV (Phillips et al., 2001). The long-term sensitivity of the co-magnetometer was significantly limited by sources of systematic noise.; The co-magnetometer provides a robust platform for precision measurements primarily due to its inherent insensitivity to magnetic field drift and field gradients. Detailed analytic and numerical modeling of the coupled spin ensemble dynamics provides good agreement with steady state and transient response measurements. Elaborate procedures have been developed for running the system optimally and minimizing the magnetic fields and lightshifts in the system.; The co-magnetometer also forms a sensitive gyroscope that inherits all the magnetic insensitivity features of the co-magnetometer and adds insensitivity to magnetic fields fast transients. The sensitivity of this gyroscope is competitive with existing compact gyroscope techniques.
机译:已开发出一种K-3He磁力仪,用于测试Lorentz和CPT对称性。极化的K蒸气形成自旋交换无弛豫(SERF)磁力计,其记录灵敏度约为1 fT / Hz。极化的3He有效地抑制了对磁场和梯度的敏感性。在一起,K-3He磁力仪对异常,CPT和洛伦兹违规磁场保持了灵敏度,这些磁场与电子和核自旋耦合的方式与正常磁场不同。 15个月的数据提供了CPT违背场与中子自旋b〜n <1.4 x 10-31 GeV,质子自旋b〜p <4.4 x 10-30 GeV,对于电子自旋,b e <1.0×10-28 GeV。这些极限与b〜n <1.1×10-31 GeV(Bear等,2002)和b〜e <3.0×10-29GeV(Heckel等,2000)的现有极限一致。质子敏感度优于公开的b〜p <1.8 x 10-27 GeV极限(Phillips等,2001)。电磁仪的长期灵敏度受到系统噪声源的极大限制。由于其固有的对磁场漂移和磁场梯度不敏感的特性,因此该磁力计提供了一个强大的平台,可进行精确的测量。耦合自旋系综动力学的详细分析和数值模型与稳态和瞬态响应测量提供了良好的一致性。已经开发出精心设计的程序,以最佳地运行系统并最小化系统中的磁场和光移。共同磁力计还形成了一个灵敏的陀螺仪,该陀螺仪继承了共同磁力计的所有对磁不敏感的特征,并为快速瞬变的磁场增加了不灵敏性。该陀螺仪的灵敏度与现有的紧凑型陀螺仪技术相比具有竞争力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号