The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber

碩士 === 國立臺北科技大學 === 光電工程系 === 106 === The laboratory has previously completed the use of quantum dot films and nanoparticle films to produce new Q-switched fiber lasers, but the three-nano-particle nanoparticle film loses the role of Q-switched lasers at high pump power. In this paper, the experimen...

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Main Authors: Ching-Yi Cho, 卓晉逸
Other Authors: 陳建銘
Format: Others
Language:zh-TW
Published: 2018
Online Access:http://ndltd.ncl.edu.tw/handle/2sz28a
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spelling ndltd-TW-106TIT051240632019-05-16T01:40:43Z http://ndltd.ncl.edu.tw/handle/2sz28a The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber 奈米材料作為飽和吸收體之被動式Q開關摻鉺光纖雷射之研究 Ching-Yi Cho 卓晉逸 碩士 國立臺北科技大學 光電工程系 106 The laboratory has previously completed the use of quantum dot films and nanoparticle films to produce new Q-switched fiber lasers, but the three-nano-particle nanoparticle film loses the role of Q-switched lasers at high pump power. In this paper, the experimental structure of the polarization controller is removed, and stable pulse energy can be obtained. In order to better understand the characteristics of the nanoparticle film, two nanoparticle films were used as the saturated absorber. It was found that the range of action of the three nanoparticle films in the same system was similar, about half of the pump power threshold ratio. In the Q-switched fiber laser system with a wavelength of 1.55μm, this paper successfully combines two nano-particle films and a quantum dot film into a new saturated absorber to generate a new Q-switched laser with a pump power of 71.7. ~176.4 (mW), the maximum output power of 7.49mW, and the maximum output pulse energy of 197nJ, the pulse time can be as short as 2.8μs, the repetition frequency is between 17.03kHz and 44.05kHz, and a stable pulse energy output with an increase in pump power. 陳建銘 2018 學位論文 ; thesis 71 zh-TW
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language zh-TW
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description 碩士 === 國立臺北科技大學 === 光電工程系 === 106 === The laboratory has previously completed the use of quantum dot films and nanoparticle films to produce new Q-switched fiber lasers, but the three-nano-particle nanoparticle film loses the role of Q-switched lasers at high pump power. In this paper, the experimental structure of the polarization controller is removed, and stable pulse energy can be obtained. In order to better understand the characteristics of the nanoparticle film, two nanoparticle films were used as the saturated absorber. It was found that the range of action of the three nanoparticle films in the same system was similar, about half of the pump power threshold ratio. In the Q-switched fiber laser system with a wavelength of 1.55μm, this paper successfully combines two nano-particle films and a quantum dot film into a new saturated absorber to generate a new Q-switched laser with a pump power of 71.7. ~176.4 (mW), the maximum output power of 7.49mW, and the maximum output pulse energy of 197nJ, the pulse time can be as short as 2.8μs, the repetition frequency is between 17.03kHz and 44.05kHz, and a stable pulse energy output with an increase in pump power.
author2 陳建銘
author_facet 陳建銘
Ching-Yi Cho
卓晉逸
author Ching-Yi Cho
卓晉逸
spellingShingle Ching-Yi Cho
卓晉逸
The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber
author_sort Ching-Yi Cho
title The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber
title_short The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber
title_full The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber
title_fullStr The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber
title_full_unstemmed The study of Passively Q-switched erbium-doped fiber laser based on Nano material Saturated absorber
title_sort study of passively q-switched erbium-doped fiber laser based on nano material saturated absorber
publishDate 2018
url http://ndltd.ncl.edu.tw/handle/2sz28a
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