论文标题

由于洛伦兹对称违规而导致的短距离力

Short-range forces due to Lorentz-symmetry violation

论文作者

Bailey, Quentin G., James, Jennifer L., Slone, Janessa R., O'Neal-Ault, Kellie

论文摘要

在以前的理论和实验性工作中,我们探索了新型的短期修饰类型的短期修饰,从时空对称性破裂引起的牛顿重力。在牛顿限制中构建了第一个非扰动性,即洛伦兹对称破坏系数的所有订单。我们利用修改重力部门的通用对称性术语并检查各向同性系数极限。结果表明,超出标准的Yukawa参数化的新型力法则更正。此外,与牛顿在短距离时的预测相比,系数值的值可能使最终的力大。讨论了典型测试质量布置的实验信号。

Complementing previous theoretical and experimental work, we explore new types of short-range modifications to Newtonian gravity arising from spacetime-symmetry breaking. The first non-perturbative, i.e., to all orders in coefficients for Lorentz-symmetry breaking, are constructed in the Newtonian limit. We make use of the generic symmetry-breaking terms modifying the gravity sector and examine the isotropic coefficient limit. The results show new kinds of force law corrections, going beyond the standard Yukawa parameterization. Further, there are ranges of the values of the coefficients that could make the resulting forces large compared to the Newtonian prediction at short distances. Experimental signals are discussed for typical test mass arrangements.

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