Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination

It is known that any laser has a pumping source, an amplifying medium and a resonator that oscillates the active mode representing the out-put wavelength of the laser. The suitable value for this ratio is 7:1 He/Ne in volume. These were to prepare under an ideal mixture of these gases as tre...

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Autor principal: Gullala Yasen Baker
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Publicado: Salahaddin University-Erbil 2021
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Acceso en línea:https://doaj.org/article/19c6bcf5c6e44356b9f208df27adfe32
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spelling oai:doaj.org-article:19c6bcf5c6e44356b9f208df27adfe322021-11-07T06:03:01ZOut-put Characteristics of Low Power He-Ne Laser Efficiency Determination10.21271/ZJPAS.33.5.32218-02302412-3986https://doaj.org/article/19c6bcf5c6e44356b9f208df27adfe322021-10-01T00:00:00Zhttps://zancojournals.su.edu.krd/index.php/JPAS/article/view/4002https://doaj.org/toc/2218-0230https://doaj.org/toc/2412-3986 It is known that any laser has a pumping source, an amplifying medium and a resonator that oscillates the active mode representing the out-put wavelength of the laser. The suitable value for this ratio is 7:1 He/Ne in volume. These were to prepare under an ideal mixture of these gases as treated before by many experiment lists. The aim of this study to specify is to the basic portions of low power He-Ne gas lasers available in laboratories, and to test them in order to look for a probable factor of the efficiency as the whole. All calculations were performed, using calculators. The results were unique for all of them that the laser aperture also plays an important role in this criteria. The best fitting ratio between the radius of laser aperture and that of laser beam was determined and connected to the other parts of the efficiency, also the ratio of(ρ/ω) was fixed at 1.55.Gullala Yasen BakerSalahaddin University-Erbilarticlelaser-plasma interactionboltzmann equationpopulation inversionlaser amplificationTechnologyTScienceQENZanco Journal of Pure and Applied Sciences, Vol 33, Iss 5, Pp 24-30 (2021)
institution DOAJ
collection DOAJ
language EN
topic laser-plasma interaction
boltzmann equation
population inversion
laser amplification
Technology
T
Science
Q
spellingShingle laser-plasma interaction
boltzmann equation
population inversion
laser amplification
Technology
T
Science
Q
Gullala Yasen Baker
Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination
description It is known that any laser has a pumping source, an amplifying medium and a resonator that oscillates the active mode representing the out-put wavelength of the laser. The suitable value for this ratio is 7:1 He/Ne in volume. These were to prepare under an ideal mixture of these gases as treated before by many experiment lists. The aim of this study to specify is to the basic portions of low power He-Ne gas lasers available in laboratories, and to test them in order to look for a probable factor of the efficiency as the whole. All calculations were performed, using calculators. The results were unique for all of them that the laser aperture also plays an important role in this criteria. The best fitting ratio between the radius of laser aperture and that of laser beam was determined and connected to the other parts of the efficiency, also the ratio of(ρ/ω) was fixed at 1.55.
format article
author Gullala Yasen Baker
author_facet Gullala Yasen Baker
author_sort Gullala Yasen Baker
title Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination
title_short Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination
title_full Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination
title_fullStr Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination
title_full_unstemmed Out-put Characteristics of Low Power He-Ne Laser Efficiency Determination
title_sort out-put characteristics of low power he-ne laser efficiency determination
publisher Salahaddin University-Erbil
publishDate 2021
url https://doaj.org/article/19c6bcf5c6e44356b9f208df27adfe32
work_keys_str_mv AT gullalayasenbaker outputcharacteristicsoflowpowerhenelaserefficiencydetermination
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