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Title: Analytical model of a transversely diode-pumped alkali metal vapour laser

Abstract

The previously presented analytical model of a transversely diode-pumped alkali metal vapour laser (A.I. Parkhomenko, A.M. Shalagin, Quantum Electronics , 2015, Vol. 45, No. 9, pp 797 – 806) is refined and expanded. Analytical formulas are derived describing the operation of a high-intensity laser at an almost arbitrary buffer gas pressure and taking into account radiation losses in the resonator. Comparison of the results of calculations of the laser energy characteristics by analytical formulas with the results of numerical calculations of other authors shows very good agreement.

Authors:
;
Publication Date:
OSTI Identifier:
22725949
Resource Type:
Journal Article
Journal Name:
Quantum Electronics (Woodbury, N.Y.)
Additional Journal Information:
Journal Volume: 47; Journal Issue: 8; Other Information: Country of input: International Atomic Energy Agency (IAEA); Journal ID: ISSN 1063-7818
Country of Publication:
United States
Language:
English
Subject:
71 CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS; ALKALI METALS; ANALYTIC FUNCTIONS; BUFFERS; COMPARATIVE EVALUATIONS; ENERGY LOSSES; METAL VAPOR LASERS; NUMERICAL SOLUTION; PUMPING; QUANTUM ELECTRONICS; RESONATORS

Citation Formats

Parkhomenko, A. I., and Shalagin, A. M. Analytical model of a transversely diode-pumped alkali metal vapour laser. United States: N. p., 2017. Web. doi:10.1070/QEL16391.
Parkhomenko, A. I., & Shalagin, A. M. Analytical model of a transversely diode-pumped alkali metal vapour laser. United States. doi:10.1070/QEL16391.
Parkhomenko, A. I., and Shalagin, A. M. Fri . "Analytical model of a transversely diode-pumped alkali metal vapour laser". United States. doi:10.1070/QEL16391.
@article{osti_22725949,
title = {Analytical model of a transversely diode-pumped alkali metal vapour laser},
author = {Parkhomenko, A. I. and Shalagin, A. M.},
abstractNote = {The previously presented analytical model of a transversely diode-pumped alkali metal vapour laser (A.I. Parkhomenko, A.M. Shalagin, Quantum Electronics , 2015, Vol. 45, No. 9, pp 797 – 806) is refined and expanded. Analytical formulas are derived describing the operation of a high-intensity laser at an almost arbitrary buffer gas pressure and taking into account radiation losses in the resonator. Comparison of the results of calculations of the laser energy characteristics by analytical formulas with the results of numerical calculations of other authors shows very good agreement.},
doi = {10.1070/QEL16391},
journal = {Quantum Electronics (Woodbury, N.Y.)},
issn = {1063-7818},
number = 8,
volume = 47,
place = {United States},
year = {2017},
month = {9}
}