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Demonstration of air-guided quantum cascade lasers without top claddings

机译:演示无顶覆层的空气引导量子级联激光器

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摘要

We report on quantum cascade lasers employing waveguides based on a predominant air confinement mechanism in which the active region is located immediately at the device top surface. The lasers employ ridge-waveguide resonators with narrow lateral electrical contacts only, with a large, central top region not covered by metallization layers. Devices based on this principle have been reported in the past; however, they employed a thick, doped top-cladding layer in order to allow for uniform current injection. We find that the in-plane conductivity of the active region - when the material used is of high quality - provides adequate electrical injection. As a consequence, the devices demonstrated in this work are thinner, and most importantly they can simultaneously support air-guided and surface-plasmon waveguide modes. When the lateral contacts are narrow, the optical mode is mostly located below the air-semiconductor interface. The mode is predominantly air-guided and it leaks from the top surface into the surrounding environment, suggesting that these lasers could be employed for surface-sensing applications. These laser modes are found to operate up to room temperature under pulsed injection, with an emission spectrum centered around λ ≃ 7:66 μm.
机译:我们报道了采用基于主要空气限制机制的波导的量子级联激光器,其中有源区位于器件顶表面的正上方。激光器使用的脊形波导谐振器仅具有狭窄的侧向电触点,并且具有大的,中央的顶部区域,未被金属化层覆盖。过去已经报道了基于该原理的设备。但是,他们采用了厚的掺杂顶部覆层,以实现均匀的电流注入。我们发现,当使用的材料质量高时,有源区的面内电导率可提供足够的电注入。因此,这项工作中展示的设备更薄,最重要的是,它们可以同时支持空气引导和表面等离激元波导模式。当横向触点狭窄时,光学模式主要位于空气-半导体界面下方。该模式主要由空气引导,并且从顶表面泄漏到周围环境中,这表明这些激光器可用于表面传感应用。发现这些激光模式在脉冲注入下可在室温下工作,发射光谱的中心为λ≃7:66μm。

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