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Nuclear Spin Gyroscope Based on an Atomic Comagnetometer

机译:基于原子电磁计的核自旋陀螺仪

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We describe a nuclear spin gyroscope based on an alkali-metal-noble-gas comagnetometer. Optically pumped alkali-metal vapor is used to polarize the noble-gas atoms and detect their gyroscopic precession. Spin precession due to magnetic fields as well as their gradients and transients can be cancelled in this arrangement. The sensitivity is enhanced by using a high-density alkali-metal vapor in a spin-exchange relaxation free regime. With a K-~3He comagnetometer we demonstrate rotation sensitivity of 5 X 10~(-7) rad s~(-1) Hz~(-1/2), equivalent to a magnetic field sensitivity of 2.5 fT/Hz~(1/2). The rotation signal can be increased by a factor of 10 using ~(21)Ne with a smaller magnetic moment. The comagnetometer is also a promising tool in searches for anomalous spin couplings beyond the standard model.
机译:我们描述了一种基于碱金属稀有气体电磁仪的核自旋陀螺仪。光泵浦的碱金属蒸气用于使稀有气体原子极化并检测其陀螺仪进动。在这种布置中,可以消除由于磁场以及其梯度和瞬变而引起的自旋进动。通过在无自旋交换弛豫状态下使用高密度碱金属蒸气来提高灵敏度。使用K-〜3He磁力仪,我们证明了5 X 10〜(-7)rad s〜(-1)Hz〜(-1/2)的旋转灵敏度,相当于2.5 fT / Hz〜(1 / 2)。使用〜(21)Ne可以在较小的磁矩的情况下将旋转信号增加10倍。在寻找标准模型之外的异常自旋耦合时,电磁仪也是有前途的工具。

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