Shin Jonghyun, Bhattacharya Pallab, Xu Jian, Váró György
Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, Michigan 48109-2122, USA.
Opt Lett. 2004 Oct 1;29(19):2264-6. doi: 10.1364/ol.29.002264.
A monolithically integrated bacteriorhodopsin-semiconductor phototransceiver is demonstrated for the first time to the authors' knowledge. In this novel biophotonic optical interconnect, the input photoexcitation is detected by bacteriorhodopsin (bR) that has been selectively deposited onto the gate of a GaAs-based field-effect transistor. The photovoltage developed across the bR is converted by the transistor into an amplified photocurrent, which drives an integrated light-emitting diode with a Ga0.37Al0.63As active region. Advantage is taken of the high-input impedance of the field-effect transistor, which matches the high internal resistance of bR. The input and output wavelengths are 594 and 655 nm, respectively. The transient response of the optoelectronic circuit to modulated input light has also been studied.
据作者所知,首次展示了一种单片集成的细菌视紫红质 - 半导体光收发器。在这种新型生物光子光学互连中,输入光激发由选择性沉积在基于砷化镓的场效应晶体管栅极上的细菌视紫红质(bR)进行检测。bR上产生的光电压由晶体管转换为放大的光电流,该光电流驱动具有Ga0.37Al0.63As有源区的集成发光二极管。利用了场效应晶体管的高输入阻抗,其与bR的高内阻相匹配。输入和输出波长分别为594和655nm。还研究了光电电路对调制输入光的瞬态响应。