论文标题

小实验中的基本物理学

Fundamental Physics in Small Experiments

论文作者

Blum, T., Winter, P., Bhattacharya, T., Chen, T. Y., Cirigliano, V., DeMille, D., Gerarci, A., Hutzler, N. R., Ito, T. M., Kim, O., Lehnert, R., Morse, W. M., Semertzidis, Y. K.

论文摘要

高能量物理学的目的是在宇宙的最大和最小尺度上了解颗粒的基本定律及其相互作用。这通常意味着要探测非常高的能量或大距离或使用高强度梁,这通常需要大规模的实验。通过在较低能量下的中小尺寸实验中,通过高精度测量进行了互补的方法。这种高精度实验的领域至少有两个原因,对粒子物理学的进步和重要性都取得了巨大的进步和重要性。首先,它们利用了与粒子物理学相邻区域的协同作用,并受益于实验技术的许多最新进展。随着现象学的加强探索,这些进步导致了认识到,与弱耦合或新物理学质量规模的预期抑制因素相关的挑战可以通过这种方法来克服。其次,与使用高能量的更常规的方法相比,这些测量值中有许多添加了一组新的粒子物理现象和可观察到的现象。因此,将高精度,较小规模的测量与大规模努力结合起来,可以更广泛而更紧密的网络,从而可能源于标准模型以外的物理学。 本报告提出了一系列小规模的研究项目,可以在电偶极矩,磁偶极力矩,费米斯风味违规,时空对称性测试以及重力测试的区域中提供关键的新精确测量。与大规模努力相比,这些高精度研究对高能量物理学的影响不断增长,并在未来几十年中提供了强有力的支持。特别是,在接下来的十年或两年中,EDM搜索有望提高敏感性四个或更多数量级。

High energy physics aims to understand the fundamental laws of particles and their interactions at both the largest and smallest scales of the universe. This typically means probing very high energies or large distances or using high-intensity beams, which often requires large-scale experiments. A complementary approach is offered through high-precision measurements in small- and mid-scale size experiments, often at lower energies. The field of such high-precision experiments has seen tremendous progress and importance for particle physics for at least two reasons. First, they exploit synergies to adjacent areas of particle physics and benefit by many recent advances in experimental techniques. Together with intensified phenomenological explorations, these advances led to the realization that challenges associated with weak couplings or the expected suppression factors from the mass scale of new physics can be overcome with such methods. Second, many of these measurements add a new set of particle physics phenomena and observables that can be reached compared to the more conventional methodologies using high energies. Combining high-precision, smaller-scale measurements with the large-scale efforts therefore casts a wider and tighter net for possible effects originating from physics beyond the Standard Model. This report presents a broad set of small-scale research projects that could provide key new precision measurements in the areas of electric dipole moments, magnetic dipole moments, fermion flavor violation, tests of spacetime symmetries, and tests with gravity. The growing impact of these high-precision studies in high energy physics and the complementary input they provide compared to large-scale efforts warrants strong support over the next decades. In particular, EDM searches are expected to improve sensitivities by four or more orders of magnitude in the next decade or two.

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