57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation

In this paper we experimentally demonstrate a femtosecond all-polarization- maintaining laser amplifier in an all-fiber scheme, which consists of a mode-locked oscillator and a two-stage amplifier. A hybrid method of dispersion compensation is proposed based on a dispersion compensation fiber and tw...

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Main Authors: Kuo Meng, Shuchao Sun, Mohan Li, Zengchao Wang
Format: Article
Language:English
Published: Elsevier 2023-05-01
Series:Results in Optics
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666950123000603
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author Kuo Meng
Shuchao Sun
Mohan Li
Zengchao Wang
author_facet Kuo Meng
Shuchao Sun
Mohan Li
Zengchao Wang
author_sort Kuo Meng
collection DOAJ
description In this paper we experimentally demonstrate a femtosecond all-polarization- maintaining laser amplifier in an all-fiber scheme, which consists of a mode-locked oscillator and a two-stage amplifier. A hybrid method of dispersion compensation is proposed based on a dispersion compensation fiber and two fiber Bragg gratings with different group velocity dispersion. The output pulse from the amplifier is 57 fs with average power of 150 mW and repetition rate of 60 MHz, corresponding to peak power of 38.6 kW. By evaluation of pulse shaping, one third of group velocity dispersion in the amplifier was compensated by the pair of gratings, and the remained amount compensated by the dispersion compensation fiber.
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spelling doaj.art-904794de44bc4fdb89bc8d9b01544d432023-04-15T05:55:22ZengElsevierResults in Optics2666-95012023-05-011110040857-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensationKuo Meng0Shuchao Sun1Mohan Li2Zengchao Wang3Corresponding author.; School of Instrument Science and Optoelectronic Engineering, Beijing Information Science and Technology University, Beijing 100192, ChinaSchool of Instrument Science and Optoelectronic Engineering, Beijing Information Science and Technology University, Beijing 100192, ChinaSchool of Instrument Science and Optoelectronic Engineering, Beijing Information Science and Technology University, Beijing 100192, ChinaSchool of Instrument Science and Optoelectronic Engineering, Beijing Information Science and Technology University, Beijing 100192, ChinaIn this paper we experimentally demonstrate a femtosecond all-polarization- maintaining laser amplifier in an all-fiber scheme, which consists of a mode-locked oscillator and a two-stage amplifier. A hybrid method of dispersion compensation is proposed based on a dispersion compensation fiber and two fiber Bragg gratings with different group velocity dispersion. The output pulse from the amplifier is 57 fs with average power of 150 mW and repetition rate of 60 MHz, corresponding to peak power of 38.6 kW. By evaluation of pulse shaping, one third of group velocity dispersion in the amplifier was compensated by the pair of gratings, and the remained amount compensated by the dispersion compensation fiber.http://www.sciencedirect.com/science/article/pii/S2666950123000603Chirped pulse amplificationFiber Bragg gratingDispersion compensation
spellingShingle Kuo Meng
Shuchao Sun
Mohan Li
Zengchao Wang
57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation
Results in Optics
Chirped pulse amplification
Fiber Bragg grating
Dispersion compensation
title 57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation
title_full 57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation
title_fullStr 57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation
title_full_unstemmed 57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation
title_short 57-fs, Er-doped all-fiber all-polarization-maintaining amplifier based on a hybrid DCF/FBG scheme for dispersion compensation
title_sort 57 fs er doped all fiber all polarization maintaining amplifier based on a hybrid dcf fbg scheme for dispersion compensation
topic Chirped pulse amplification
Fiber Bragg grating
Dispersion compensation
url http://www.sciencedirect.com/science/article/pii/S2666950123000603
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