Yakaboylu E, Lemeshko M
IST Austria (Institute of Science and Technology Austria), Am Campus 1, 3400 Klosterneuburg, Austria.
Phys Rev Lett. 2017 Feb 24;118(8):085302. doi: 10.1103/PhysRevLett.118.085302. Epub 2017 Feb 22.
It is a common knowledge that an effective interaction of a quantum impurity with an electromagnetic field can be screened by surrounding charge carriers, whether mobile or static. Here we demonstrate that very strong, "anomalous" screening can take place in the presence of a neutral, weakly polarizable environment, due to an exchange of orbital angular momentum between the impurity and the bath. Furthermore, we show that it is possible to generalize all phenomena related to isolated impurities in an external field to the case when a many-body environment is present, by casting the problem in terms of the angulon quasiparticle. As a result, the relevant observables such as the effective Rabi frequency, geometric phase, and impurity spatial alignment are straightforward to evaluate in terms of a single parameter: the angular-momentum-dependent screening factor.
众所周知,量子杂质与电磁场的有效相互作用可以被周围的电荷载流子屏蔽,无论这些载流子是移动的还是静止的。在这里,我们证明,由于杂质与浴之间的轨道角动量交换,在中性、弱极化环境中会发生非常强的“反常”屏蔽。此外,我们表明,通过将问题用角振子准粒子来表述,可以将与外场中孤立杂质相关的所有现象推广到存在多体环境的情况。结果,诸如有效拉比频率、几何相位和杂质空间排列等相关可观测量可以根据一个单一参数:角动量相关的屏蔽因子直接进行评估。