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Quantum theory of the vibronic solid-state laser

机译:振动固态激光器的量子理论

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摘要

A quantum-mechanical description of a vibronic multimode standing-wave transition-metal ion laser is presented. The impurity ion levels are coupled both by the radiation field and by the phonons of the host lattice. A dynamic Heisenberg-Langevin set of equations for the material system and the photon and phonon operators, including radiative and nonradiative damping terms and quantum-stochastic forces, has been derived. The numerical solutions of those equations show the crucial role of the phonons in the laser dynamics. The competition between the photons and the phonons leads to regular stable self-pulsation for certain sets of parameters.
机译:介绍了振动多模驻波过渡金属离子激光器的量子力学描述。杂质离子水平通过辐射场和主晶格的声子耦合。推导了用于材料系统以及光子和声子算子的动态Heisenberg-Langevin方程组,包括辐射和非辐射阻尼项以及量子随机力。这些方程的数值解表明了声子在激光动力学中的关键作用。光子与声子之间的竞争导致某些参数集有规律的稳定自脉动。

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