Phase conjugate techniques for diode laser brightness enhancement

S. Maccormack, R. Eason
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Abstract

Diode laser arrays provide a compact, high power, high efficiency source of monochromatic light and are finding many applications in all solid-state mini and micro-laser systems. Unfortunately, the preferred modes of operation of free-running, conventional gain-guided laser arrays involve the simultaneous oscillation of many array transverse modes1. This results in an undesirable broadened twin-lobe output in the far field which is generally several times the diffraction limit of the emitting region. This leads to poor focussability which in turn severely limits the efficiency of launching into optical fibers, coupling into planar waveguides and longitudinal pumping of solid-state micro-lasers.
二极管激光亮度增强的相位共轭技术
二极管激光阵列提供了一种紧凑、高功率、高效率的单色光源,并在所有固态微型和微型激光系统中得到了广泛的应用。不幸的是,自由运行的传统增益制导激光阵列的首选工作模式涉及许多阵列横向模式的同时振荡1。这导致在远场的一个不希望的展宽双瓣输出,通常是发射区域的衍射极限的几倍。这导致聚焦性差,进而严重限制了发射到光纤、耦合到平面波导和纵向泵浦固体微激光器的效率。
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