论文标题
掺杂具有杂质的晶格捕获的玻体物种:从地面特性到相关的隧道动力学
Doping a lattice-trapped bosonic species with impurities: From ground state properties to correlated tunneling dynamics
论文作者
论文摘要
我们研究了由杂质物种和有限大小的培养基组成的晶格被困的骨骼混合物的基态性能和非平衡动力学。对于一种和两种杂质,我们观察到,根据晶格深度和种间相互作用强度,从强烈离域的局部杂质分布发生过渡。在后一种状态下,两个物种相分开,从而形成粒子孔对。对于两种杂质,我们发现在临界晶格深度以下,它们在两个相邻的外晶杆中被脱位,并且两体相关。该过渡的特征是从强度到被抑制的种间纠缠,以增加杂质中的排斥力。转向混合物的动态响应,在将种间排斥对较小的值淬灭后,我们揭示了单个杂质的主要隧道隧穿过程与粒子孔对的隧道稳定性对应于颗粒孔对的动力学稳定性,其动力学稳定性在很大程度上取决于淬灭倍数。在时间进化过程中,观察到种间纠缠的显着增加,这是由于状态叠加的堆积而引起的,因此具有多体性质。在两个骨杂质的情况下,颗粒孔对过程在动力学过程中变得不稳定,而杂质在相邻的晶格位点汇总,同时密切相关。
We investigate the ground state properties and the nonequilibrium dynamics of a lattice trapped bosonic mixture consisting of an impurity species and a finite-sized medium. For the case of one as well as two impurities we observe that, depending on the lattice depth and the interspecies interaction strength, a transition from a strongly delocalized to a localized impurity distribution occurs. In the latter regime the two species phase separate, thereby forming a particle-hole pair. For two impurities we find that below a critical lattice depth they are delocalized among two neighboring outer lattice wells and are two-body correlated. This transition is characterized by a crossover from strong to a suppressed interspecies entanglement for increasing impurity-medium repulsion. Turning to the dynamical response of the mixture, upon quenching the interspecies repulsion to smaller values, we reveal that the predominant tunneling process for a single impurity corresponds to that of a particle-hole pair, whose dynamical stability depends strongly on the quench amplitude. During the time-evolution a significant increase of the interspecies entanglement is observed, caused by the build-up of a superposition of states and thus possesses a many-body nature. In the case of two bosonic impurities the particle-hole pair process becomes unstable in the course of the dynamics with the impurities aggregating in adjacent lattice sites while being strongly correlated.