论文标题
平价和时间逆转抗核力量
Parity- and time-reversal-violating nuclear forces
论文作者
论文摘要
奇偶校验和时间反转保护(PVTC)和奇偶校验侵入以及核中的时间反转侵入力(PVTV)仅形成了核之间总相互作用的很小成分。然而,对这些微小力的研究可能引起极大的兴趣,因为它们允许使用核系统获得有关基本对称性的信息。 PVTC的相互作用来自核心内部夸克与核之间的弱相互作用,而对PVTC效应的研究为夸克夸克弱相互作用打开了一个窗口。 PVTV的相互作用对基本层面上更外来的相互作用敏感,特别是标准模型Lagrangian中的强大CP违规,甚至对在各种超出标准模型场景中预测的外来现象。这些相互作用的存在可以通过研究核系统极化散射中的各种不对称性,或者通过测量核子,核和透明原子和分子的非变化永久性电偶极矩的存在。在这一贡献中,我们回顾了各种框架内的核PVTC和PVTV相互作用的推导。我们特别关注手性有效领域理论的应用,这使与夸克级别的基本相互作用建立了更严格的联系。我们研究了这些潜力引起的PVTC和PVTV效应对质子 - 蛋白质散射的纵向不对称和辐射性中子蛋白蛋白捕获的纵向不对称,以及Deuteron和Trinucleon系统的电偶极力矩。
Parity-violating and time-reversal conserving (PVTC) and parity-violating and time-reversal-violating (PVTV) forces in nuclei form only a tiny component of the total interaction between nucleons. The study of these tiny forces can nevertheless be of extreme interest because they allow to obtain information on fundamental symmetries using nuclear systems. The PVTC interaction derives from the weak interaction between the quarks inside nucleons and nuclei and the study of PVTC effects opens a window on the quark-quark weak interaction. The PVTV interaction is sensitive to more exotic interactions at the fundamental level, in particular to strong CP violation in the Standard Model Lagrangian, or even to exotic phenomena predicted in various beyond-the-Standard-Model scenarios. The presence of these interactions can be revealed either by studying various asymmetries in polarized scattering of nuclear systems, or by measuring the presence of non-vanishing permanent electric dipole moments of nucleons, nuclei and diamagnetic atoms and molecules. In this contribution, we review the derivation of the nuclear PVTC and PVTV interactions within various frameworks. We focus in particular on the application of chiral effective field theory, which allows for a more strict connection with the fundamental interactions at the quark level. We investigate PVTC and PVTV effects induced by these potential on several few-nucleon observables, such as the longitudinal asymmetry in proton-proton scattering and radiative neutron-proton capture, and the electric dipole momentsof the deuteron and the trinucleon system.