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Generation of sub-Poissonian light by a four-level microlaser with a high-Q cavity

机译:具有高Q腔的四能级微激光产生亚泊松光

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摘要

We develop a kinetic theory that describes the behavior of a monatomic four-level laser when the atom is fixed inside a high-Q optical cavity. Such a statement of the problem is similar to that used in the experiment of G. M. Meyer, H. -J. Briegel, and H. Walther [Europhys. Lett. 37, 317 (1997)]. The condition that the number of photons is large and the photon fluctuations are small is employed. We show that by selecting the parameters of the periodic electromagnetic pulses exciting the atom one can achieve regular pumping of the upper laser level and generate sub-Poissonian laser light. We also discuss the reasons why the statistical pattern of the radiation differs from the micromaser pattern with regular injection of atoms.
机译:我们开发了一种动力学理论,描述了当原子固定在高Q光学腔内时单原子四能级激光器的行为。这种问题的陈述类似于G. M. Meyer,H. -J。实验中所使用的陈述。 Briegel和H. Walther [Europhys。来吧37,317(1997)]。采用光子数量大且光子波动小的条件。我们表明,通过选择激发原子的周期性电磁脉冲的参数,可以实现较高激光能级的常规泵浦并产生亚泊松激光。我们还讨论了为什么辐射的统计模式与定期注入原子的微脉冲模式不同的原因。

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