论文标题
肌动剂和灯笼分子以寻找强大的CP侵入性
Actinide and lanthanide molecules to search for strong CP-violation
论文作者
论文摘要
核内部CP侵略性相互作用的存在导致核席夫力矩的存在。 Schiff矩势对应于核内部局部的电场,并沿其自旋定向。该场可以与原子的电子相互作用,并诱导整个系统的永久性电偶极矩(EDM)。核中的席夫矩和相应的电场在核中增强了八振形变形,从而导致了增强的原子EDM。由于存在相反的奇偶校验的能量接近水平,因此T分子中T,P侵入效应的t,p侵入效应也有几阶增强。我们研究了具有八杆型灯笼和actinide nuclei的双原子分子类的Schiff力矩增强:$^{227} $ acf,$^{227} $ acn,$^{227} $^{153} $ eun。将现有的实验成就投影到具有球形核($^{205} $ tlf)的DIMAGNETIC分子中的EDM,以至于人们可以期望对量子彩色动力学参数$ {\barθ} $ {\barθ} $和其他Hadronic Cp-Violation and the Mashering ulibering的最佳限制,对量子染色体动力学参数$ {\barθ} $ {\barθ}}的敏感性非常高。它可能对CP竞争基本互动性质的现代理解产生巨大影响。
The existence of the fundamental CP-violating interactions inside the nucleus leads to the existence of the nuclear Schiff moment. The Schiff moment potential corresponds to the electric field localized inside the nucleus and directed along its spin. This field can interact with electrons of an atom and induce the permanent electric dipole moment (EDM) of the whole system. The Schiff moment and corresponding electric field are enhanced in the nuclei with the octupole deformation leading to the enhanced atomic EDM. There is also a few-order enhancement of the T,P-violating effects in molecules due to the existence of energetically close levels of opposite parity. We study the Schiff moment enhancement in the class of diatomic molecules with octupole-deformed lanthanide and actinide nuclei: $^{227}$AcF, $^{227}$AcN, $^{227}$AcO$^+$, $^{229}$ThO, $^{153}$EuO$^+$ and $^{153}$EuN. Projecting the existing experimental achievements to measure EDM in diamagnetic molecules with spherical nucleus ($^{205}$TlF) to the considered systems one can expect a very high sensitivity to the quantum chromodynamics parameter ${\bar θ}$ and other hadronic CP-violation parameters surpassing the current best limits by several orders of magnitude. It can have a dramatic impact on the modern understanding of the nature of CP-violating fundamental interactions.