论文标题

从实验实验中限制轴向到核子耦合和非牛顿的重力方面的艺术状态

The State of the Art in Constraining Axion-to-Nucleon Coupling and Non-Newtonian Gravity from Laboratory Experiments

论文作者

Mostepanenko, V. M., Klimchitskaya, G. L.

论文摘要

审查并比较了Yukawa型校正对牛顿的重力定律的校正以及轴承样颗粒与从不同实验室实验获得的核子的耦合常数。讨论下的非牛顿重力的约束涵盖了从纳米到毫米的广泛相互作用范围,并遵循中子散射的实验,测量Casimir力和Cavendish型实验。从磁力计测量值,Cavendish型实验,CASIMIR物理学以及使用分子氢束进行的轴向到核子耦合常数的约束,这是指从$ 10^{-10} $ ev到200 ev的轴支质量区域。特别注意通过测量测试机构之间的纳米分离距离的Casimir力获得的最新限制。讨论了一些提出的实验,重点是限制非牛顿的重力,轴突状颗粒和其他假设的弱相互作用的颗粒,例如变色龙和对称粒子。

Constraints on the Yukawa-type corrections to Newton's gravitational law and on the coupling constant of axionlike particles to nucleons obtained from different laboratory experiments are reviewed and compared. The constraints on non-Newtonian gravity under discussion cover the wide interaction range from nanometers to millimeters and follow from the experiments on neutron scattering, measuring the Casimir force and Cavendish-type experiments. The constraints on the axion-to-nucleon coupling constant following from the magnetometer measurements, Cavendish-type experiments, Casimir physics, and experiments with beams of molecular hydrogen are considered which refer to the region of axion masses from $10^{-10}$ eV to 200 eV. Particular attention is given to the recent constraints obtained from measuring the Casimir force at nanometer separation distance between the test bodies. Several proposed experiments focused on constraining the non-Newtonian gravity, axionlike particles and other hypothetical weakly interacting particles, such as chameleons and symmetrons, are discussed.

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