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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum-electrodynamical density-functional theory: Bridging quantum optics and electronic-structure theory
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Quantum-electrodynamical density-functional theory: Bridging quantum optics and electronic-structure theory

机译:量子电动力学密度泛函理论:量子光学与电子结构理论的桥梁

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In this work, we give a comprehensive derivation of an exact and numerically feasible method to perform ab initio calculations of quantum particles interacting with a quantized electromagnetic field. We present a hierarchy of density-functional-type theories that describe the interaction of charged particles with photons and introduce the appropriate Kohn-Sham schemes. We show how the evolution of a system described by quantum electrodynamics in Coulomb gauge is uniquely determined by its initial state and two reduced quantities. These two fundamental observables, the polarization of the Dirac field and the vector potential of the photon field, can be calculated by solving two coupled, nonlinear evolution equations without the need to explicitly determine the (numerically infeasible) many-body wave function of the coupled quantum system. To find reliable approximations to the implicit functionals, we present the appropriate Kohn-Sham construction. In the nonrelativistic limit, this density-functional-type theory of quantum electrodynamics reduces to the densityfunctional reformulation of the Pauli-Fierz Hamiltonian, which is based on the current density of the electrons and the vector potential of the photon field. Bymaking further approximations, e.g., restricting the allowed modes of the photon field, we derive further density-functional-type theories of coupled matter-photon systems for the corresponding approximate Hamiltonians. In the limit of only two sites and one mode we deduce the appropriate effective theory for the two-site Hubbard model coupled to one photonic mode. This model system is used to illustrate the basic ideas of a density-functional reformulation in great detail and we present the exact Kohn-Sham potentials for our coupled matter-photon model system.
机译:在这项工作中,我们给出了一种精确且在数值上可行的方法的全面推导,以执行与量子电磁场相互作用的量子粒子的从头算。我们提出了一个密度泛函类型理论的层次结构,该层次结构描述了带电粒子与光子的相互作用,并介绍了适当的Kohn-Sham方案。我们展示了如何用库仑规中的量子电动力学描述的系统的演化是由其初始状态和两个减少的量唯一地确定的。可以通过求解两个耦合的非线性演化方程来计算这两个基本可观测值,狄拉克场的极化和光子场的矢量势,而无需明确确定耦合的(在数值上不可行的)多体波函数量子系统。为了找到隐式泛函的可靠近似,我们提出了适当的Kohn-Sham构造。在非相对论的极限中,这种量子电动力学的密度泛函理论将基于电子的电流密度和光子场的矢量势,简化为泡利-菲尔兹·哈密顿量的密度泛函。通过做进一步的近似,例如,限制光子场的允许模式,我们为相应的近似哈密顿量导出了耦合物质-光子系统的进一步的密度函数型理论。在只有两个位点和一个模式的限制下,我们推导了耦合到一个光子模式的两个位点的哈伯德模型的适当有效理论。该模型系统用于详细说明密度泛函的基本概念,我们为耦合物质-光子模型系统提供了精确的Kohn-Sham势。

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