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Efficient generation of 1.9 W yellow light by cascaded frequency doubling of a distributed Bragg reflector tapered diode

机译:分布式布拉格反射器锥形二极管的级联倍频可有效产生1.9 W黄光

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摘要

Watt-level yellow emitting lasers are interesting for medical applications, due to their high hemoglobin absorption, and for efficient detection of certain fluorophores. In this paper, we demonstrate a compact and robust diode-based laser system in the yellow spectral range. The system generates 1.9 W of single-frequency light at 562.4 nm by cascaded single-pass frequency doubling of the 1124.8 nm emission from a distributed Bragg reflector (DBR) tapered laser diode. The absence of a free-space cavity makes the system stable over a base-plate temperature range of 30 K. At the same time, the use of a laser diode enables the modulation of the pump wavelength by controlling the drive current. This is utilized to achieve a power modulation depth above 90% for the second harmonic light, with a rise time below 40 mu s. (C) 2016 Optical Society of America
机译:瓦特级发黄光激光器由于其对血红蛋白的高吸收性以及对某些荧光团的有效检测而在医疗应用中颇受关注。在本文中,我们演示了在黄色光谱范围内的紧凑而坚固的基于二极管的激光系统。该系统通过从分布式布拉格反射器(DBR)锥形激光二极管发出的1124.8 nm发射的级联单通倍频,产生562.4 nm处的1.9 W单频光。缺少自由空间的空腔可使系统在30 K的基板温度范围内保持稳定。同时,使用激光二极管可通过控制驱动电流来调节泵浦波长。这用于使二次谐波光的功率调制深度达到90%以上,并且上升时间低于40μs。 (C)2016美国眼镜学会

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