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Optically controlled low-power on-off mode resonant tunneling oscillator with a heterojunction phototransistor switch

机译:具有异质结光电晶体管开关的光控低功率开关模式谐振隧穿振荡器

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We report an optically controlled low-power on-off mode oscillator based on a resonant tunneling diode (RTD) that is monolithically integrated with a heterojunction phototransistor (HPT) optical switch. In order to achieve a low-power operation at a wavelength of 1.55 mu m an InP-based quantum-effect tunneling diode is used for microwave signal generation based on a unique negative differential conductance (NDC) characteristic of the RTD at a low applied voltage. In addition, the high-gain HPT is used for converting incident optical data to an electrical data signal. The fabricated on-off mode oscillator shows a low-power consumption of 5 mW and a high-data-rate of 1 Gb/s at an oscillation frequency of 4.7 GHz. A good energy efficiency of 5 pJ/bit has been obtained due to the low DC power consumption along with high-data-rate performance of the RTD-based optoelectronic integration scheme. (C) 2015 Optical Society of America
机译:我们报告了基于谐振隧穿二极管(RTD)的光控低功耗开关模式振荡器,该二极管与异质结光电晶体管(HPT)光开关单片集成。为了在1.55μm的波长下实现低功率工作,基于InP的量子效应隧穿二极管用于在低施加电压下基于RTD独特的负差分电导(NDC)特性产生微波信号。 。此外,高增益HPT用于将入射的光学数据转换为电数据信号。制成的开关模式振荡器在4.7 GHz的振荡频率下具有5 mW的低功耗和1 Gb / s的高数据速率。由于基于RTD的光电集成方案的低DC功耗以及高数据速率性能,因此获得了5 pJ / bit的良好能源效率。 (C)2015年美国眼镜学会

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