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Development of a passively Q-switched Nd:YAG microchip laser for use in the Satellite Laser Ranging 2000 project.

机译:开发了用于卫星激光测距2000项目的被动调Q开关Nd:YAG微芯片激光器。

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摘要

Presently, NASA is designing a replacement for its existing satellite laser ranging systems. These systems are used to measure Earth-satellite distances, tectonic plate movement, variations in rotational motion and other geodetic phenomena. Satellite Laser Ranging 2000 (SLR2000) is envisioned as a fully automated, sub-centimeter accuracy, eye-safe, low-cost replacement to the current SLR systems. It is expected to overcome present limitations by operating autonomously; being free of optical, chemical or electrical hazards; and having a greater average time between failures. Expected shot range precision is about one centimeter with normal point precision of better than three centimeters. This system will have twenty-four hour tracking coverage. SLR2000 specifications dictate operation at visible wavelengths with eye-safe energies on the order of one hundred microjoules and repetition rates on the order of two kilohertz.; The optical subsystem of SLR2000 includes a passively Q-switched Nd:YAG microlaser. Passive Q-switching will be achieved using a saturable absorber and offers a number of advantages over the mode-locked lasers currently used in ranging stations: no need for long resonators with tight thermal control; no electro-optic switch required for single pulse selection; saturable absorbers precluding the use of carcinogenic dyes and solvents; and RF drive frequency electronics not tied to the resonator length of the laser cavity. The presented work describes the research and development of a prototype laser used to produce the energies, repetition rates and pulsewidths required for SLR2000. Optimization theories and models were applied to the laser design in order to accurately predict and assess performance characteristics of both gain medium and saturable absorber. Data were obtained which illustrated the affect of pump laser saturation and thermal lensing of the gain medium. Important laboratory skills and techniques were acquired in the design and construction of passively Q-switched microlasers.
机译:目前,NASA正在为其现有的卫星激光测距系统设计替代产品。这些系统用于测量卫星地球距离,构造板块运动,旋转运动变化和其他大地测量现象。卫星激光测距2000(SLR2000)可以作为目前的SLR系统的全自动,亚厘米级精度,人眼安全,低成本的替代产品。有望通过自主运行来克服当前的局限性;没有光学,化学或电气危害;并且两次故障之间的平均时间更长。预期的射击范围精度约为1厘米,法线点精度优于3厘米。该系统将具有二十四小时的跟踪覆盖范围。 SLR2000规范规定了在可见光波长下的工作,对人眼安全的能量为一百微焦耳,重复频率为两千赫兹。 SLR2000的光学子系统包括一个被动调Q的Nd:YAG微激光器。使用可饱和吸收器将实现无源Q开关,并且与目前测距站中使用的锁模激光器相比,它具有许多优点:不需要具有严格热控制的长谐振器;单脉冲选择不需要电光开关;饱和吸收剂,禁止使用致癌染料和溶剂;射频驱动频率电子器件与激光腔的谐振器长度无关。提出的工作描述了用于产生SLR2000所需的能量,重复频率和脉冲宽度的原型激光器的研究和开发。优化理论和模型被应用于激光器设计,以准确地预测和评估增益介质和可饱和吸收体的性能特征。获得的数据说明了泵浦激光器饱和度和增益介质的热透镜效应。在被动调Q微激光器的设计和建造过程中获得了重要的实验室技能和技术。

著录项

  • 作者

    Gompers, Samuel Leo.;

  • 作者单位

    The American University.;

  • 授予单位 The American University.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

  • 入库时间 2022-08-17 11:47:27

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