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Observation of gravitationally induced vertical striation of polarized ultracold neutrons by spin-echo spectroscopy

机译:利用自旋回波光谱法观察极化超冷中子在重力作用下的垂直条纹

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摘要

We describe a spin-echo method for ultracold neutrons (UCNs) confined in a precession chamber and exposed to a |B0|=1  μT magnetic field. We have demonstrated that the analysis of UCN spin-echo resonance signals in combination with knowledge of the ambient magnetic field provides an excellent method by which to reconstruct the energy spectrum of a confined ensemble of neutrons. The method takes advantage of the relative dephasing of spins arising from a gravitationally induced striation of stored UCNs of different energies, and also permits an improved determination of the vertical magnetic-field gradient with an exceptional accuracy of 1.1  pT/cm. This novel combination of a well-known nuclear resonance method and gravitationally induced vertical striation is unique in the realm of nuclear and particle physics and should prove to be invaluable for the assessment of systematic effects in precision experiments such as searches for an electric dipole moment of the neutron or the measurement of the neutron lifetime.
机译:我们描述了一种自旋回波方法,用于限制在进动室内并暴露于| B0 | = 1μT磁场的超冷中子(UCN)。我们已经证明,结合环境磁场知识对UCN自旋回波共振信号进行分析,可以提供一种出色的方法来重构受限中子集合的能谱。该方法利用了由重力诱导的存储不同能量的UCN的条纹引起的自旋的相对相移,并且还允许以1.1 determinationpT / cm的出色精度改进垂直磁场梯度的确定。众所周知的核共振方法和引力引起的垂直条纹的这种新颖组合在核物理和粒子物理领域中是独一无二的,应该被证明对于评估精密实验(例如寻找电偶极矩)中的系统效果具有无价的价值。中子或中子寿命的度量。

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