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RIGOROUS SOLUTION TO A QUANTUM STATISTICAL MECHANICAL LASER MODEL

机译:量子统计机械激光模型的严格解

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A quantum mechanical laser model with relaxation and pumping mechanisms is solved rigorously. A basic equation for the density matrix is derived by the damping theory and is transformed into a corresponding c-number equation for a (quasi-) probability density. This is done with the aid of the quantum phase space method. The probability density is expanded in terms of orthogonal polynomials. The expansion coefficients are solved to give a continued fraction. A complete solution is obtained, namely, time evolution of the probability density is determined as well as that for certain physical quantities. The solution is valid even for strong coupling between photons and atoms: it is free from restriction on system parameters. Detailed studies on dynamics are performed for typical values of the system parameters. This is a prototype of interacting quantum nonequilibrium systems. Relevance to systems other than a laser is briefly mentioned. [References: 49]
机译:严格求解具有弛豫和泵浦机制的量子力学激光模型。密度矩阵的基本方程式是通过阻尼理论导出的,并转换为对应的(准)概率密度的c数方程式。这是借助量子相空间方法完成的。根据正交多项式扩展了概率密度。求解膨胀系数以得到连续分数。获得了一个完整的解决方案,即确定了概率密度的时间演化以及某些物理量的概率。该解决方案即使对于光子与原子之间的强耦合也是有效的:它不受系统参数的限制。针对系统参数的典型值进行了动力学方面的详细研究。这是相互作用的量子非平衡系统的原型。简要提到与激光以外的系统的相关性。 [参考:49]

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