有限温度下三角形晶格中玻色子的相和集体模:一个簇平均场研究

M. Malakar, S. Ray, S. Sinha, D. Angom
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引用次数: 5

摘要

在非立方晶格中实现玻色-爱因斯坦凝聚(BEC)的激励下,利用平均场(MF)和簇平均场(CMF)理论,研究了有限温度下三角形晶格中具有最近邻相互作用的玻色子的相和集体激发。计算了硬核和软核玻色子的有限温度相图,并用CMF方法系统地分析了晶格受挫和相互作用引起的相关效应。在MF朗道理论的框架下,推导了不同相间转变温度的半解析估计,特别是对于硬核玻色子。除了密度波(DW)和超流体(SF)等常见相外,我们还对不同的超固体(SS)进行了表征。这些相和它们在有限温度下的转变是由集体模态确定的。在正在进行的冷原子实验中,可以探测到超固体的低洼激发,特别是戈德斯通模式和希格斯模式。
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Phases and collective modes of bosons in a triangular lattice at finite temperature: A cluster mean field study
Motivated by the realization of Bose-Einstein condensates (BEC) in non-cubic lattices, in this work we study the phases and collective excitation of bosons with nearest neighbor interaction in a triangular lattice at finite temperature, using mean field (MF) and cluster mean field (CMF) theory. We compute the finite temperature phase diagram both for hardcore and softcore bosons, as well analyze the effect of correlation arising due to lattice frustration and interaction systematically using CMF method. A semi-analytic estimate of the transition temperatures between different phases are derived within the framework of MF Landau theory, particularly for hardcore bosons. Apart from the usual phases such as density waves (DW) and superfluid (SF), we also characterize different supersolids (SS). These phases and their transitions at finite temperature are identified from the collective modes. The low lying excitations, particularly Goldstone and Higgs modes of the supersolid can be detected in the ongoing cold atom experiments.
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