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Monolithic Waveguide-Based Linear Photodetector Array for Use as Ultracompact Spectrometer

机译:基于单片波导的线性光电探测器阵列,用作超紧凑光谱仪

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We propose a monolithic spectral waveguide photodetector (SWGPD) concept based on a waveguide with a chemical gradient of the semiconductor alloy forming the absorbing medium that allows for spectrally resolved detection. The chemical gradient correlates the absorption of different wavelengths with the position on the waveguide. The generated charge carriers are collected by a linear array of photodetectors along the waveguide. As model system and proof of concept (Mg,Zn)O alloys in the wurtzite phase (Zn-rich) are considered that allow photon detection in the near ultraviolet spectral region. Our concept allows for high overall detection of (in principle) all photons coupled into the waveguide. The spectral range and resolution are determined by the chemical gradient, the spectral broadening of the absorption edges, and the optical confinement factor. At the same time, the photodetectors can provide high-time resolution, limited by the photodetector geometry.
机译:我们提出一种基于波导的整体式光谱波导光电探测器(SWGPD)概念,该波导具有形成吸收介质的半导体合金的化学梯度,从而可以进行光谱分辨的检测。化学梯度使不同波长的吸收与波导上的位置相关。所产生的电荷载流子由沿着波导的线性光电探测器阵列收集。作为模型系统和概念证明,纤锌矿相(富锌)中的(Mg,Zn)O合金被认为可以在近紫外光谱区域内进行光子检测。我们的概念允许对耦合到波导中的所有光子进行高总体检测(原则上)。光谱范围和分辨率由化学梯度,吸收边缘的光谱展宽和光学限制因子决定。同时,光电探测器可以提供高时间分辨率,受光电探测器几何形状的限制。

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