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Invertibility of the retarded response functions for initialmixed states: application to one-body reduced density matrix functional theory

机译:初始混合态的延迟响应函数的可逆性:应用于一维降密度矩阵泛函理论

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摘要

Recently, I have derived conditions to characterise the kernel of the retarded response function, under the assumption that the initial state is a ground state. In this paper, I demonstrate its generalisation to mixed states (ensembles). To make the proof work, the weights in the ensemble need to be decreasing for increasing energies of the pure states from which the mixed state is constructed. The resulting conditions are not easy to verify, but under the additional assumptions that the ensemble weights are directly related to the energies and that the full spectrum of the Hamiltonian participates in the ensemble, it is shown that potentials only belong to the kernel of the retarded response function if they commute with the initial Hamiltonian. These additional assumptions are valid for thermodynamic ensembles, which makes this result physically relevant. The conditions on the potentials for the thermodynamic ensembles are much stronger than in the pure state (zero temperature) case, leading to a much less involved kernel when the conditions are applied to the retarded one-body reduced density matrix response function.
机译:最近,在初始状态为基态的假设下,我推导了表征延迟响应函数内核的条件。在本文中,我演示了其对混合状态(集合)的推广。为了使证明工作可行,需要减小集合中的权重以增加构成混合态的纯态的能量。由此产生的条件不容易验证,但是在附加的假设下,即集合权重与能量直接相关,并且哈密顿量的全部光谱都参与了集合,这表明势仅属于延迟粒子的核。如果它们与初始哈密顿通勤相通,​​则响应函数。这些额外的假设对于热力学合奏是有效的,这使得该结果在物理上有意义。热力学集合体的电势条件比纯态(零温度)情况要强得多,当将条件应用于延迟的单体缩减密度矩阵响应函数时,所涉及的核更少。

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