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包层光纤

"包层光纤"的翻译和解释

例句与用法

  • The research of er3 + / yb3 + co - doped fiber laser and amplifier is carrying in experiment . the er3 + / yb + co - doped double cladding fiber is produced by ino , the pumping resource wavelength is 977nm , the maximum pumping power coupling into inner cladding is 1 . 33w
    公司拉制的e尸+ / yb3 +共掺双包层光纤,泵浦源的波长为977nm ,最大输出功率为2 . 46w ,实际祸合到双包层光纤中的最大功率为1
  • In the yb3 + - doped single or double clad fiber lasers by using few - mode fiber bragg gratings as wavelength reflectors , the linewidth of the output laser is smaller than 0 . 1nm , which shows that such a scheme can produce narrow linewidth laser
    最吸引我们的是使用这种光纤光栅做为腔镜组成的掺yb3 +单包层和双包层光纤激光器有着小于0 . 1nm的3db带宽,说明少量模光纤布拉格光栅具有较窄的反射峰。
  • The amplification characters of er3 + / yb3 + co - doped fiber are studied in our experiments . when the doped fiber length is 50cm , the amplified signal power is 170mw and the gain is 12 . 2db in the case of signal power of 10 . 8mw and pumping power of 2 . 5w
    本论文着重研究了采用一级放大时,信号光在双包层光纤中的放大特性,截取50cm的光纤,在输入泵浦光功率为2 . 5w ,信号光功率为10 . 8mw时,获得了170mw的放大信号光输出,增益为12 . 2db 。
  • The dissertation focuses on the yb3 + - doped double clad fiber laser . the research works in detail are shown as follows : 1 . with the phase - mask method , we make a fiber bragg grating in a few - mode fiber whose cut wavelength is greater than 1060nm
    本论文围绕着掺yb3 +双包层光纤激光器进行研究工作,报告了得到的科研成果,包括以下的内容: 1 .在截止波长高于1060nm的少量模光纤中用相位掩模法写入布拉格光纤光栅,制作的布拉格光栅具有几个透射峰。
  • In this paper , by using the method of geometrical optics and the theory of fiber optics mode , we analyzed difference characteristics of double - clad fiber andthe effect of all kinds of dcf ' s inner - cladding structures on1 the absorption efficiency of dcf and its laser
    因此在本论文里采用几何光学和纤维光学模式理论的方法分析了不同内包层结构的双包层光纤对光纤激光器性能的影响,建立理论分析模型,并设计了新型内包层结构的双包层光纤。
  • The new fiber laser , including photonic crystal fiber ( pcf ) laser and multi - core double - clad fiber laser , was analyzed . one of novel structure . dcf laser that will be used into high power output was put forward based on the theoretic analysis
    分析了新型光纤激光器(如光子晶体光纤激光器及多纤芯双包层光纤激光器)的基本原理及发展现况,设计了一种新型可实现高功率输出的双包层光纤激光器结构,并从理论分析出发给出其工作原理及制作方法。
  • 2 . considering the energy level structure and the spectrum characteristics of yb3 + ion , we deduce the relationships between laser performances of yb3 + - doped double clad fiber laser and parameters of laser cavity from the steady state rate equations with a new model
    2 .讨论了yb3 +离子的能级结构和光谱特性,并从稳态速率方程,结合谐振腔结构特点采用ido kelson和amos hardy的模型,给出了双包层光纤激光器的输出特性与激光器谐振腔结构参数的关系准解析表达式。
  • High - power yb - doped fiber lasers have caused particular interest as a reliable , efficient and compact , low cost source for a variety of applications in industry , printers , free - space communication , national defense and so on . the dissertation focuses on the yb - doped double - clad fiber lasers , the fiber bragg gratings in double - clad fiber , the fiber lasers based on double - clad fiber grating and pumping methods . the research works in detail are shown as follows : 1
    本项研究工作结合国家自然科学重点基金和国家八六三项目,研究内容是对包层泵浦的掺镱光纤器件进行研究,从理论和实验两方面对掺镱双包层光纤激光器、放大器,双包层光纤bragg光栅及其选频的光纤激光器,泵浦耦合方式等进行研究,取得了良好的结果。
  • Owing to the limitation of the ray method in analyzing the field distribution and transmit power of optical waves in fibers we decide to apply waveguide theory for analyzing dcf with truncated inner cladding in an at tempt to find out the divergences of different types of dcf with truncated inner cladding in absorption efficiency in unit distance
    由于射线法在分析光波在光纤中的场分布、传播功率等情况时有其局限性,因此,文章改用波动理论对缺陷型内包层双包层光纤进行分析,试图找出不同类型的缺陷型内包层双包层光纤单位距离内吸收效率的差异。
  • The basic operation principle and the recent development was summarized generally , the realization of high power fiber laser and its key techniques were analyzed , which including high power fiber pumping modules > dcf and fiber grating technologies , etc . the advancement with the conception of double - clad fiber makes it possible that fiber laser as a type of device with high - power output
    在本论文中,首先概述了光纤激光器的发展历史、最新研究现状及最新发展情况,总结了实现高功率光纤激光器所需要的关键技术,如高功率泵浦模块、双包层光纤及光纤光栅技术等。双包层光纤概念的提出使得光纤激光器作为高功率输出器件成为可能。
  • 更多例句:  1  2  3  4  5
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