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Theoretical and Experimental Study on Waveguide Avalanche Photodiodes With an Undepleted Absorption Layer for 25-Gb/s Operation

机译:具有无损耗吸收层的25 Gb / s工作波导雪崩光电二极管的理论和实验研究

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摘要

Waveguide avalanche photodiodes (WG-APDs) have been developed for a 25-Gb/s operation. The waveguide structure was adopted for the APDs in order to achieve both high-speed performance and high responsivity. First, the dependence of the multiplication and absorption layer thickness on the 3-dB bandwidths of the WG-APDs was theoretically clarified. It was found that introducing an undepleted absorption layer was effective in improving the 3-dB bandwidth without reducing efficiency. The 3-dB bandwidth of the fabricated WG-APD based on the calculation results was over 20 GHz up to a multiplication factor of 7. The responsivities were 0.6 A/W for 1.31 $mu$m and 0.75 A/W for 1.55 $mu$m wavelength. High reliability of the WG-APDs was also demonstrated.
机译:波导雪崩光电二极管(WG-APD)已开发用于25 Gb / s的操作。为了实现高速性能和高响应性,APD采用了波导结构。首先,从理论上阐明了倍增吸收层厚度对WG-APD的3 dB带宽的依赖性。发现引入未耗尽的吸收层可有效地改善3-dB带宽而不降低效率。根据计算结果,制成的WG-APD的3 dB带宽超过20 GHz,倍增系数为7。响应度为1.3A $μm时为0.6 A / W,1.55 $ mu时为0.75 A / W。 $ m波长。还展示了WG-APD的高可靠性。

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