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Characteristics and applications of the short external cavity laser diode.

机译:短外腔激光二极管的特性和应用。

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摘要

The characteristics of the external cavity laser diode are investigated. Emphasis is placed on the short external cavity configuration. The general governing model equations which include the multiple reflection effect are derived. It is shown that the coupling coefficient becomes a complex function of the external cavity length and the near field beam size of the laser diode due to the diffraction loss of an open resonator. The validity of this open resonator model is proven experimentally by the asymmetry in optical power versus external cavity length characteristic curve. For analysis of the ultra short external cavity laser, it is necessary to include this complex coupling coefficient. As an example, the flying optical disk head is studied using this model. In some cases, especially when the external cavity length is longer than several micrometers, the external cavity may be simply regarded as a lossy resonator. With this constant loss per roundtrip approximation, the feedback operator can be reduced to the closed form. The stationary and transient solutions are investigated analytically and numerically. The single mode condition, and dynamical stability condition are derived. Also, the simple expression for the relaxation oscillation frequency of the short external cavity laser is given for the first time. With our model, it can not be expected to find the strange attractor for the constant biased autonomous operation. However, the chaotic behavior in the current modulated nonautonomous operation is investigated. It seems that the route to chaos in this system is not limited to the period-doubling route, which has been believed as the only route in the modulated solitary laser diode so far. Generally, it is suggested that the operating external cavity length should be close to the constructive interference position, as it will give superior properties. Some experimental results applying the short external cavity laser as a laser diode sensor are given.
机译:研究了外腔激光二极管的特性。重点放在短的外腔配置上。推导了包含多重反射效应的一般控制模型方程。结果表明,由于开放谐振器的衍射损耗,耦合系数成为激光二极管的外腔长度和近场光束尺寸的复函数。通过光功率与外腔长度特性曲线的不对称性,实验证明了这种开放式谐振器模型的有效性。为了分析超短外腔激光器,必须包括这个复杂的耦合系数。例如,使用该模型来研究飞行的光盘头。在某些情况下,尤其是当外腔长度大于几微米时,外腔可以简单地视为有损谐振器。通过这种恒定的每次往返损失,可以将反馈算子简化为闭合形式。静态和瞬态解都通过分析和数值研究。推导了单模条件和动力稳定性条件。另外,首次给出了短外腔激光器的弛豫振荡频率的简单表达式。使用我们的模型,不能期望为不断偏向的自治操作找到奇怪的吸引子。但是,研究了电流调制非自治操作中的混沌行为。看来,在该系统中达到混沌的途径并不限于倍频途径,迄今为止,它一直被认为是调制式孤立激光二极管中的唯一途径。通常,建议工作外腔长度应接近相长干涉位置,因为它将提供优越的性能。给出了将短外腔激光器用作激光二极管传感器的一些实验结果。

著录项

  • 作者

    Kim, Jin-Yong.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Electronics and Electrical.;Physics Optics.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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