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- W2092586987 abstract "Heisenberg's equations were used to formulate equations of motion for the operators of the electro-magnetic field and its interaction with the electrons of atoms, where second quantization is used. In order to take into account the effect of reservoirs, and to secure quantum mechanical consistency, damping terms and stochastic forces must be added. The averaged equations yield those of semiclassical laser theory. The solution of fully quantum mechanical equations lead to my prediction that below laser threshold the light source emits uncorrelated wave tracks, while above it laser light consists of a stabilized classical amplitude, on which small quantum fluctuations and phase diffusion are superimposed." @default.
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- W2092586987 date "2002-05-01" @default.
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- W2092586987 title "Heisenberg's Equations in Laser Theory. A Historical Overview" @default.
- W2092586987 doi "https://doi.org/10.1002/1521-3978(200205)50:5/7<642::aid-prop642>3.0.co;2-n" @default.
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