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首页> 外文期刊>Journal of Applied Physics >Excitation mechanisms in HeCd and HeZn ion lasers
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Excitation mechanisms in HeCd and HeZn ion lasers

机译:TheCd和HeZn离子激光器的激发机理

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摘要

Experimental evidence from pulsed afterglow studies is presented which demonstrates that thermal energy charge transfer is the primary source of excitation for the high‐lying Zn II and Cd II laser levels, with configurations of the type 3d 10nx and 4d 10nx, respectively, whereas the main source of excitation of the Zn II and Cd II laser levels, with configurations of the type 3d 94s 2 and 4d 95s 2, is Penning ionization. The total velocity‐averaged cross sections for thermal energy charge exchange and for Penning ionization are measured to be of order 10-15 cm2. These large cross sections account for the relatively high efficiency and low threshold currents characteristic of HeZn and HeCd ion lasers. The intensity of spontaneous emission from laser levels excited in a flowing afterglow by charge‐transfer reactions is broken down into the component contributions: direct charge‐transfer excitation, radiative cascade, and collisional cascade excitation. The results are used to estimate the values of the individual cross sections for direct charge transfer into Zn II and Cd II laser levels. The potential of thermal energy charge transfer as a general excitation scheme for gaseous lasers is illustrated by several new proposals for new cw laser transitions in the region between 2000 and 4000 Å.
机译:提出了来自脉冲余辉研究的实验证据,表明热能电荷转移是高层Zn II和Cd II激光能级的主要激发源,其配置分别为3d 10nx和4d 10nx类型,而主要是彭宁电离是Zn II和Cd II激光能级的激发源,其配置类型为3d 94s 2和4d 95s 2。用于热能电荷交换和潘宁电离的总速度平均横截面的测量值为10-15 cm2。这些较大的横截面说明了HeZn和HeCd离子激光器的相对高效率和低阈值电流特性。电荷转移反应在流动的余辉中激发的激光能级的自发发射强度可分为以下成分:直接电荷转移激发,辐射级联和碰撞级联激发。结果用于估计将单个电荷直接转移到Zn II和Cd II激光能级中的各个横截面的值。对于气态激光器的一般激发方案,热能电荷转移的潜力已在2000至4000Å区域内针对新型连续激光过渡的一些新提议中得到了说明。

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  • 来源
    《Journal of Applied Physics 》 |1973年第10期| 共20页
  • 作者

    Collins G. J.;

  • 作者单位

    Department of Electrical Engineering, Colorado State University, Fort Collins, Colorado 80521;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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