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Population inversion, temperature, and photon distributions of the generalized fermionic ising ferromagnetic model: Path-integral representation of the spin system

机译:广义铁离子伊辛铁磁模型的种群反演,温度和光子分布:自旋系统的路径积分表示

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摘要

The quantum partition function and the emerging energy of a fermionic Ising ferromagnetic model involving all possible interactions (generalized Ising model) are obtained from an appropriate tracing of the analytic propagator path integral over Grassmann variable coherent nonorthogonal states in the imaginary time domain. The dynamics derived from the interaction of this system with a single-mode cavity field in the rotating wave approximation is investigated for nonresonant states within the framework of the Jaynes-Cummings two-level model consisting of the vacuum state and a thermally averaged manifold of excited states. Time evolution of the population inversion is computed in the nanosecond time scale, assuming that the initial coherent state of the field is given by a Poisson distribution. The limit of high temperatures characterizing the manifold of excited states becomes chaotic with rapid oscillations, whereas the ground state is described correctly in the thermodynamic limit by the vacuum state. A breakup is seen in the photon distribution into a series of peaks because of the detuning between the spin system and the field. However, this structure is smeared out, and the general shape is preserved in the computation emerging from the Laplace transform of the photon distribution. (c) 2006 Wiley Periodicals, Inc.
机译:费马离子伊辛铁磁模型(涉及所有可能的相互作用)的量子分配函数和新兴能量(广义伊辛模型)是从虚时域中格拉斯曼变量相干非正交态上的解析传播路径积分的适当跟踪获得的。在Jaynes-Cummings两级模型的框架内,研究了由系统与旋转波近似中单模腔场相互作用产生的动力学的非共振态,该模型由真空态和热平均激元组成状态。假设场的初始相干状态由泊松分布给出,则总体反转的时间演化以纳秒为单位进行计算。表征激发态歧管的高温极限随着快速振荡而变得混乱,而基态在热力学极限中由真空态正确描述。由于自旋系统和电场之间的失谐,在光子分布中看到破裂,形成一系列峰。然而,这种结构被涂抹了,并且在从光子分布的拉普拉斯变换产生的计算中保留了总体形状。 (c)2006年Wiley Periodicals,Inc.

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