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二维光晶格中冷极性分子的量子相。

Quantum phases of cold polar molecules in 2D optical lattices.

机构信息

ITAMP, Harvard-Smithsonian Center of Astrophysics, Cambridge, Massachusetts 02138, USA.

出版信息

Phys Rev Lett. 2010 Mar 26;104(12):125301. doi: 10.1103/PhysRevLett.104.125301. Epub 2010 Mar 25.

Abstract

We study the quantum phases of hard-core bosonic polar molecules on a two-dimensional square lattice interacting via repulsive dipole-dipole interactions. In the limit of small tunneling, we find evidence for a devil's staircase, where Mott solids appear at rational fillings of the lattice. For finite tunneling, we establish the existence of extended regions of parameters where the ground state is a supersolid, obtained by doping the solids either with particles or vacancies. We discuss the effects of finite temperature and finite-size confining potentials as relevant to experiments.

摘要

我们研究了二维正方形晶格上硬芯玻色极性分子的量子相,这些分子通过排斥偶极-偶极相互作用相互作用。在小隧道极限下,我们发现了魔鬼阶梯的证据,其中在晶格的有理填充处出现了莫特固体。对于有限的隧道,我们确定了在参数的扩展区域中存在超流态的存在,通过在固体中掺杂粒子或空位来获得超流态。我们讨论了与实验相关的有限温度和有限尺寸限制势的影响。

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