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Novel monolithic waveguide-based smart pixel for high-contrast high-gain and high-speed optical switching

机译:基于新型单片波导的智能像素,可实现高对比度,高增益和高速光开关

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Abstract: We present results on optical switching of a novel monolithic waveguide-based smart pixel. In this smart pixel two surface-normal optical input beams control an optical output beam propagating in-plane through a waveguide modulator. For the operation only DC biases are required. The optical front end of our waveguide-based smart pixel consists of a specially designed n-i-p photoconductive detector in series with a reference n-i-p photodiode. Together, both devices are forming a digital opto-electronic switch, which is directly controlling the waveguide modulator. All components are based on the Franz-Keldysh effect. For a first demonstration of our monolithic waveguide-based smart pixel all components have been processed from the same GaAs/AlGaAs double hetero n-i-p structure grown by MBE on a semi-insulating GaAs substrate. With a non-optimized sample design we obtain an output contrast ratio of 17 dB and an optical gain in excess of 320. The optical input energy is estimated to be 2.6 pJ (detector area 20 $MUL 20 $mu@m$+2$/). In this case the wavelength of the input beams was 783 nm, while the waveguide modulator was operated at 910 nm. An evaluation of the switching dynamics indicates that high-speed operation in excess of 400 Mbit/s can be achieved. This waveguide-based smart pixel could for example be used in optical routing networks.!13
机译:摘要:我们提出了基于新颖的基于单片波导的智能像素的光开关的结果。在该智能像素中,两个表面法线光输入光束控制通过波导调制器在平面内传播的光输出光束。对于该操作,仅需要直流偏置。我们基于波导的智能像素的光学前端由与参考n-i-p光电二极管串联的特殊设计的n-i-p光电导检测器组成。这两个设备一起构成了一个数字光电开关,它直接控制着波导调制器。所有成分均基于Franz-Keldysh效应。对于我们的基于单片波导的智能像素的首次演示,所有组件均由MBE在半绝缘GaAs衬底上生长的相同GaAs / AlGaAs双异质n-i-p结构处理而成。使用未经优化的样本设计,我们获得的输出对比度为17 dB,光学增益超过320。光学输入能量估计为2.6 pJ(检测器面积20 $ MUL 20 $ mu @ m $ + 2 $ /)。在这种情况下,输入光束的波长为783 nm,而波导调制器的波长为910 nm。评估开关动态性表明,可以实现超过400 Mbit / s的高速运行。例如,这种基于波导的智能像素可用于光路由网络。13

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