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Solving Quantum-Nonautonomous System with Non-Hermitian Hamiltonians by algebraic Method

机译:用代数方法求解非埃尔米特哈密顿量的量子非自治系统

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摘要

A convenient method to exactly solve the quantum-nonautonomous systems with non-Hermitian Hamil- tonians is proposed. It is shown that a nonadiabatic complete biorthonormal set can be easily obtained by the gauge transformation method in which the algebraic structure of systems has been used. The nonunitary evolution operator is also found by choosing a special gauge function. All auxiliary parameters introduced in the present approach are only determined by some algebraic equations. The dynamics of two quantum-nonautonomous systems ruled by non-Hermitian Hamiltonians, including a two-photon ionization process involving two-state only and a mesoscopic RLC circuit with a Source, are treated as the demonstration of our general approach.
机译:提出了一种简便的方法,可以精确地求解非厄密的哈密顿量的量子非自治系统。结果表明,通过使用系统的代数结构的轨距变换方法,可以轻松地获得非绝热完全双正交集。通过选择特殊量规函数也可以找到非一元演化算子。本方法中引入的所有辅助参数仅由某些代数方程确定。由非Hermitian哈密顿量定律的两个量子非自治系统的动力学,包括仅涉及两个状态的双光子电离过程和带源的介观RLC电路,被视为我们一般方法的证明。

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