School of Physics, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Phys Rev Lett. 2007 Aug 24;99(8):080403. doi: 10.1103/PhysRevLett.99.080403. Epub 2007 Aug 23.
The ground state phase diagram of fermion mixtures in optical lattices is analyzed as a function of interaction strength, fermion filling factor, and tunneling parameters. In addition to standard superfluid, phase-separated or coexisting superfluid -- excess-fermion phases found in homogeneous or harmonically trapped systems, fermions in optical lattices have several insulating phases, including a molecular Bose-Mott insulator (BMI), a Fermi-Pauli (band) insulator (FPI), a phase-separated BMI-FPI mixture or a Bose-Fermi checkerboard (BFC). The molecular BMI phase is the fermion mixture counterpart of the atomic BMI found in atomic Bose systems, the BFC or BMI-FPI phases exist in Bose-Fermi mixtures, and lastly the FPI phase is particular to the Fermi nature of the constituent atoms of the mixture.
本文分析了费米混合物在光晶格中的基态相图作为相互作用强度、费米填充因子和隧道参数的函数。除了标准超流体之外,在均匀或谐波囚禁系统中发现的相分离或共存超流体——过剩费米子相,光晶格中的费米子还有几种绝缘相,包括分子玻色-莫特绝缘相(BMI)、费米-泡利(能带)绝缘相(FPI)、相分离的 BMI-FPI 混合物或玻色-费米棋盘(BFC)。分子 BMI 相是原子 BMI 的费米混合物对应物,原子 BMI 存在于原子玻色系统中,BFC 或 BMI-FPI 相存在于玻色-费米混合物中,而最后 FPI 相是混合物组成原子的费米性质所特有的。