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Transversely superimposed gratings for narrow far-field terahertz surface emission of nonlinear quantum cascade lasers

机译:横向叠加光栅用于非线性量子级联激光器的窄远场太赫兹表面发射

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摘要

We present terahertz (THz) surface emission by difference frequency generation in nonlinear quantum cascade lasers operating at room temperature. The device comprises two separate, transversely superimposed gratings, one for selective feedback for the midinfrared (MIR) modes and one for normal surface emission of the generated THz radiation. This allows for narrow far-field THz emission with an enhanced extraction over the entire device length with improved electrical and thermal properties compared to previous devices relying on Cherenkov phase matching. The MIR grating is realized as a higher order loss-coupled distributed feedback grating for single-mode emission at two distinct wavelengths. Its position determines the position of the standing wave pattern of the MIR modes and of the nonlinear polarization wave. This allows for a precise placement of the second-order top grating, which leads to perpendicular surface emission. The device emits in a single-lobed far-field with a full width half maximum of 3.5 deg in single-mode operation at room temperature.
机译:我们通过在室温下工作的非线性量子级联激光器中的差频产生来呈现太赫兹(THz)表面发射。该设备包括两个单独的横向重叠的光栅,一个用于中红外(MIR)模式的选择性反馈,另一个用于所产生的THz辐射的正常表面发射。与依靠Cherenkov相位匹配的先前设备相比,这允许窄远场THz发射,并在整个设备长度上增强了提取能力,同时具有改善的电学和热学性能。 MIR光栅实现为用于两个不同波长的单模发射的高阶损耗耦合分布式反馈光栅。它的位置决定了MIR模式的驻波图和非线性极化波的位置。这允许二阶顶部光栅的精确放置,这导致垂直表面发射。该器件在室温下以单模工作时在单瓣远场发射,其最大半峰宽为3.5度。

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