Analytical diagonalisation of the Hamiltonian of the quantum Rabi model in the Coulomb gauge

A. Leonau, I. Feranchuk
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Abstract

In the present paper we investigate the approximate analytical diagonalisation of the Hamiltonian of the quantum Rabi model written in the Coulomb gauge and taking into account the gauge invariance of the system. It is shown that the Hamiltonian of the model can be diagonalised with high accuracy on the basis of a unitary operator of the gauge transformation utilising a simple basis set of state vectors. It is essential that the obtained approximate expressions do not depend on the variational parameters and are valid within the whole range of the parameter values. The zeroth-order approximation and uniformly available approximation are derived for the eigenstates of the system, and their comparison with the results of the numerical simulation is elaborated. The second-order correction to the zeroth-order approximation is deduced and its contribution to the energy of the system is estimated. The obtained results could be useful for description of the evolution of the quantum Rabi model as well as for investigation of systems of two-level atoms in the resonant quantum field.
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库仑规范中量子拉比模型哈密顿量的解析对角化
在考虑系统规范不变性的情况下,研究了用库仑规范表示的量子拉比模型哈密顿量的近似解析对角化。利用一个简单的状态向量基集,在规范变换的酉算子的基础上,可以高精度地对角化模型的哈密顿量。重要的是,所得到的近似表达式不依赖于变分参数,并且在参数值的整个范围内有效。推导了系统特征态的零阶近似和一致可用近似,并与数值模拟结果进行了比较。推导了零阶近似的二阶修正,并估计了其对系统能量的贡献。所得结果可用于描述量子Rabi模型的演化以及共振量子场中二能级原子系统的研究。
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