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Method for reducing amplitude noise in multi-wavelength modelocked semiconductor lasers

机译:减少多波长多模对接半导体激光器中振幅噪声的方法

摘要

Multiwavelength modelocked laser systems and methods for reducing intensity fluctuations and amplitude noise in each of the wavelength channels as well as manipulating the interwavelength phase coherence properties. The systems and methods can include lens, semiconductor optical amplifier, grating, cylindrical lens, rod lens and an approximately 7 nm MQW saturable absorber between mirrors for providing a laser cavity resonator for hybridly modelocked operation. Additional systems and methods can include two different positions for the saturable absorber inside the laser resonator which enables direction of the interwavelength phase coherence properties. Up to approximately 300 MHz optical pulse trains in each of up to approximately three channels can be generated. Combining gain flattening and noise suppression within the optical cavity of the modelocked laser can result in generating up to approximately 123 wavelength channels, each having up to approximately 6 Giga Hertz optical pulse trains.
机译:多波长多模ockocked激光系统和方法,用于减少每个波长通道中的强度波动和幅度噪声,以及操纵波长间相位相干特性。该系统和方法可以包括透镜,半导体光放大器,光栅,柱面透镜,棒状透镜以及在反射镜之间的大约7nm的MQW可饱和吸收体,以提供用于混合式对接操作的激光腔谐振器。额外的系统和方法可以包括用于激光谐振器内部的可饱和吸收体的两个不同位置,这使得能够实现波长间相位相干特性的方向。最多可在大约三个通道的每个通道中产生高达约300 MHz的光脉冲序列。在锁模激光器的光学腔内结合增益平坦化和噪声抑制功能可导致产生多达约123个波长通道,每个波长通道具有约6个千兆赫兹光脉冲序列。

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