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二次元微小共振器レ一ザ一における空間モ一ドの選択励起

机译:二维微谐振腔激光中空间模式的选择性激发

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摘要

Advances in fabrication technologies have allowed the fabrication of laser cavities with arbitrary 2-D shapes. 2-D cavities have a wide variety of spatial modes, which have different wavefunctions. From the viewpoints of both fundamental physics and practical applications, it is important to selectively excite one desired mode from among many spatial modes. In this paper, we review the methods of selective mode excitation for 2-D microcavity laser diodes based on the control of both cavity shape and electrode contact pattern. We also review two major applications of the selective excitation technique to fundamental research in both quantum and laser chaos. One is the observation of chaos-assisted tunneling, and the other is compact chaotic laser devices that consist of a 2-D microcavity laser and an external feedback cavity. Finally we refer to the potential applications of the selective excitation technique to such functional optical devices as beam-switching devices and polarization-switching devices.
机译:制造技术的进步已允许制造具有任意二维形状的激光腔。二维腔体具有多种空间模式,具有不同的波函数。从基础物理学和实际应用的观点来看,从许多空间模式中选择性地激发一种期望的模式是重要的。在本文中,我们回顾了基于空腔形状和电极接触图案的控制的二维微腔激光二极管的选择性模式激发方法。我们还将回顾选择性激发技术在量子混沌和激光混沌基础研究中的两个主要应用。一种是观察混沌辅助隧穿,另一种是紧凑的混沌激光设备,它由一个二维微腔激光器和一个外部反馈腔组成。最后,我们将选择性激发技术的潜在应用应用于诸如光束切换设备和偏振切换设备之类的功能性光学设备。

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