过剩
凝聚态物理
物理
相图
玻色子
相(物质)
超导电性
超流氦-4
莫特绝缘子
平均场理论
罗顿
量子涡旋
量子力学
作者
K. Sheshadri,H. R. Krishnamurthy,Rahul Pandit,T. V. Ramakrishnan
出处
期刊:EPL
[Institute of Physics]
日期:1993-05-01
卷期号:22 (4): 257-263
被引量:418
标识
DOI:10.1209/0295-5075/22/4/004
摘要
The bosonic Hubbard model is studied via a simple mean-field theory. At zero temperature, in addition to yielding a phase diagram that is qualitatively correct, namely a superfluid phase for non-integer fillings and a Mott transition from a superfluid to an insulating phase for integer fillings, this theory gives results that are in good agreement with Monte Carlo simulations. In particular, the superfluid fraction obtained as a function of the interaction strength U for both integer and non-integer fillings is close to the simulation results. In all phases the excitation spectra are obtained by using the random phase approximation (RPA): the spectrum has a gap in the insulating phase and is gapless (and linear at small wave vectors) in the superfluid phase. Analytic results are presented in the limits of large U and small superfluid density. Finite-temperature phase diagrams and the Mott-insulator-normal-phase crossover are also described.
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