论文标题

中子的重力量子状态的质量能量等效性

Mass-energy equivalence in gravitationally bound quantum states of the neutron

论文作者

Tobar, Germain, Haine, Simon, Costa, Fabio, Zych, Magdalena

论文摘要

重力结合的中子已成为实验搜索新物理学的重要工具,例如对牛顿力量的修改或暗物质颗粒的候选者。在这里,我们将质量能量等效性的相对论效应包括在重力结合的中子模型中。具体而言,由于存在外部磁场,我们研究了重力结合的中子哈密顿量的校正。我们表明,由于质量能量等效性,中子的额外重量会导致中子的特征力和本征态的较小转移,并检查这种相对论校正将如何影响被捕获的中子的实验。我们进一步考虑了估计对进动频率的相对论校正的最终精度,并发现在短时间内,与单独的自旋测量相比,在短时间内,对自旋和运动自由度的联合测量都提供了计量学的增强。

Gravitationally bound neutrons have become an important tool in the experimental searches for new physics, such as modifications to Newton's force or candidates for dark matter particles. Here we include the relativistic effects of mass-energy equivalence into the model of gravitationally bound neutrons. Specifically, we investigate a correction in a gravitationally bound neutron's Hamiltonian due to the presence of an external magnetic field. We show that the neutron's additional weight due to mass-energy equivalence will cause a small shift in the neutron's eigenenergies and eigenstates, and examine how this relativistic correction would affect experiments with trapped neutrons. We further consider the ultimate precision in estimating the relativistic correction to the precession frequency and find that, at short times, a joint measurement of both the spin and motional degrees of freedom provides a metrological enhancement as compared to a measurement of the spin alone.

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