The System of Quantum Properties of Superposition for Lambda Type Three-level Lasers

Authors

  • Takele Teshome Somano

Keywords:

Superposition, Quantum quadrature, Photon Statistics

Abstract

The squeezing features, as well as the built-in light bulbs figure produced by the quantum superposition system to prepare a lambda type of lasers for three levels have been adjusted. We determined what the quadrature variation and photon number of the pit route numbers mean with the help of Langevin c-number mathematical solutions corresponding to the standard order. The results show that the light produced by the process used is in a state of compression. We have made our analysis of the conditions of simple pressure can reveal a system that is considered under the condition that the total continuous damage is greater than the benefit and pressure that occurs in minus-quadrature. In addition, we receive the help of Q-function and operator to strengthen the size of the surface, and the fixed beams are determined by the quadrature variation and the number of photon definitions. The result shows that the lower the photon value and the quadrature variation of the highly illuminated beam the total number of the mean photon number and the quadrature variation of the illuminated beam.

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Published

2020-09-04

How to Cite

Somano, T. T. . (2020). The System of Quantum Properties of Superposition for Lambda Type Three-level Lasers. International Journal of Applied Sciences: Current and Future Research Trends, 5(01), 1–14. Retrieved from https://ijascfrtjournal.isrra.org/index.php/Applied_Sciences_Journal/article/view/1097

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