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From Visible to Mid-infrared Supercontinuum Generation Using Tellurite fiber with 1064 nm Pump

机译:使用1064 nm泵浦的碲酸盐光纤从可见光产生到中红外超连续谱

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摘要

Supercontinuum has great potential in defense applications due to its wide spectrum, high coherence and high brightness, and it has attracted more and more attention across the world especially in the visible and mid-infrared region like 3-5um which is the atmospheric transparency window. Higher power, wider spectrum, and better spectrum flatness will be the dominant pursuit for the future development of supercontinuum. Currently silica based fiber are the dominant host for visible to near-infrared supercontinuum generation, and soft glass like fluoride fiber, chalcogenide fiber and tellurite fiber are widely used for mid-infrared supercontinuum generation due to their lower loss in the mid-infrared region. In this paper, the generalized non-linear Schrodinger equation is used to simulate the visible to mid-infrared supercontinuum generation in a tellurite fiber. A femtosecond laser at 1064 nm worked as the pump source. 1.5 µm and 2 µm lasers are generally first pump candidates to generate mid-infrared supercontinuum in tellurite glass because the zero-dispersion wavelength of the tellurite glasses is around 2.15µm. However, 1064 nm laser has more advantages in application in terms of cost, structure, and power scaling, so it is meaningful to investigate whether 1064 nm laser can pump tellurite fiber to generate supercontinuum with wide bandwidth. The simulation results show that 500 nm-5000 nm supercontinuum can be generated in a tellurite fiber with less than 10 kW peak power for the pump laser, and the length of the tellurite fiber is only several millimeter. The simulation results provide important guidance for future supercontinuum development.
机译:超连续谱由于其广谱,高相干性和高亮度而在国防应用中具有巨大潜力,并且它已在全世界引起越来越多的关注,特别是在可见光和中红外区域(如3-5um,这是大气透明窗口)。更高的功率,更宽的频谱以及更好的频谱平坦度将是超连续谱未来发展的主要追求。当前,基于二氧化硅的纤维是产生近红外超连续谱的主要宿主,并且诸如氟化物纤维,硫属化物纤维和碲酸盐纤维之类的软玻璃由于其在中红外区域的较低损耗而被广泛用于产生中红外超连续谱。在本文中,广义非线性Schrodinger方程用于模拟在亚碲酸盐纤维中可见到中红外超连续谱的产生。 1064 nm的飞秒激光用作泵浦源。 1.5微米和2微米的激光器通常是首选的泵浦激光器,可在碲酸盐玻璃中生成中红外超连续谱,因为碲酸盐玻璃的零色散波长约为2.15微米。然而,1064 nm激光器在成本,结构和功率缩放方面在应用方面具有更多优势,因此研究1064 nm激光器是否可以泵浦亚碲酸盐光纤以生成具有宽带宽的超连续谱具有重要意义。仿真结果表明,在泵浦激光器的峰值功率小于10 kW的碲酸盐纤维中,可以产生500 nm-5000 nm的超连续谱,并且碲酸盐纤维的长度仅为几毫米。仿真结果为未来超连续谱的发展提供了重要的指导。

著录项

  • 来源
    《Laser Technology for Defense and Security XIII》|2017年|101920m.1-101920m.7|共7页
  • 会议地点 Anaheim(US)
  • 作者单位

    College of Optoelectronic Science and Engineering, National University of Defense Technology,Changsha 410073;

    College of Optoelectronic Science and Engineering, National University of Defense Technology,Changsha 410073;

    College of Optoelectronic Science and Engineering, National University of Defense Technology,Changsha 410073;

    College of Optoelectronic Science and Engineering, National University of Defense Technology,Changsha 410073;

    College of Optoelectronic Science and Engineering, National University of Defense Technology,Changsha 410073;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fiber laser; Supercontinuum; Tellurite fiber; mid-infrared; visible;

    机译:光纤激光器超连续谱;碲石纤维;中红外可见;

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