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Confined indirect excitons in one and two dimensional magnetic lattices: Bose-Hubbard model and beyond

机译:一维和二维磁晶格中的受限间接激子:Bose-Hubbard模型及其他

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Confined indirect excitons in a two-dimensional magnetic lattice are promoted to simulate condensed matter systems. Excitonic particles are magnetically trapped so that a sufficient cooling mechanism can allow the trapped clouds of indirect excitons to experience the Bose-Einstein condensation phase transition. Thus, a long-range spatial coherence can be resolved causing an inherited phase-locked across all of the coupled sites (single traps). Using an external magnetic bias field a mutual tunneling can adiabatically be exchanged between sites in which case the underline physics of Bose-Hubbard model can be explored such as Mott-insulator and Josephson Effect.
机译:推广了二维磁晶格中的受限间接激子,以模拟凝聚态系统。激子粒子被磁捕获,因此足够的冷却机制可以使捕获的间接激子云经历玻色-爱因斯坦凝聚相的转变。因此,可以解决远距离空间连贯性,从而在所有耦合位点(单个陷阱)之间产生遗传锁相。使用外部磁场偏置,可以在站点之间绝热地交换相互隧穿,在这种情况下,可以探索Bose-Hubbard模型的下划线物理特性,例如Mott-insulator和Josephson效应。

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