Schulz Bruno, Saenz Alejandro
Institut für Physik, AG Moderne Optik, Humboldt-Universität zu Berlin, Newtonstr. 15, 12489, Berlin, Germany.
Chemphyschem. 2016 Nov 18;17(22):3747-3755. doi: 10.1002/cphc.201600708.
A system of two dipolar particles that are confined in a double-well potential and interact via a realistic isotropic interaction potential is investigated as a protoype for ultracold atoms with a magnetic dipole moment or ultracold dipolar heteronuclear diatomic molecules in double-well traps or in optical lattices. The resulting energy spectrum is discussed as a function of the dipole-dipole interaction strength. The variation of the strength of the dipole-dipole interaction is found to lead to various resonance phenomena. Among those are the previously discussed inelastic confinement-induced resonances as well as the dipole-induced resonances. It is found that the double-well potential gives rise to a new type of resonances, tunnel-induced dipolar ones.
研究了一个由两个偶极粒子组成的系统,它们被限制在双阱势中,并通过一个实际的各向同性相互作用势相互作用,作为具有磁偶极矩的超冷原子或双阱陷阱或光学晶格中的超冷偶极异核双原子分子的原型。讨论了所得能谱作为偶极-偶极相互作用强度的函数。发现偶极-偶极相互作用强度的变化会导致各种共振现象。其中包括先前讨论的非弹性限制诱导共振以及偶极诱导共振。发现双阱势会产生一种新型共振,即隧道诱导偶极共振。