| Literature DB >> 30393536 |
Yongjin Wang1,2, Xin Wang1,2, Bingcheng Zhu1,2, Zheng Shi1,2, Jialei Yuan1,2, Xumin Gao1,2, Yuhuai Liu3, Xiaojuan Sun4, Dabing Li4, Hiroshi Amano5.
Abstract
A monolithic multicomponent system is proposed and implemented on a III-nitride-on-silicon platform, whereby two multiple-quantum-well diodes (MQW-diodes) are interconnected by a suspended waveguide. Both MQW-diodes have an identical low-In-content InGaN/Al0.10Ga0.90N MQW structure and are produced by the same fabrication process flow. When appropriately biased, both MQW-diodes operate under a simultaneous emission-detection mode and function as a transmitter and a receiver at the same time, forming an in-plane full-duplex light communication system. Real-time full-duplex audio communication is experimentally demonstrated using the monolithic multicomponent system in combination with an external circuit.Entities:
Year: 2018 PMID: 30393536 PMCID: PMC6207558 DOI: 10.1038/s41377-018-0083-0
Source DB: PubMed Journal: Light Sci Appl ISSN: 2047-7538 Impact factor: 17.782
Fig. 1Material characterization of III-nitride epitaxial films.
a Cross-sectional TEM image of the AlN/AlGaN multiple buffer layers. b High-resolution TEM image of the InGaN/Al0.10Ga0.90N MQW active region
Fig. 2SEM image of the monolithic multicomponent system
Fig. 3Optical and electrical performance of the monolithic multicomponent system.
a Measured I–V curves of the monolithic multicomponent system. b EL spectra and spectral responsivity of the ring MQW-diode. c Induced photocurrent at the circular MQW-diode as a function of the injection current of the ring MQW-diode. d Schematic of full-duplex light communication of the monolithic multicomponent system using identical MQW-diodes
Fig. 4External filter and amplifier circuit
Fig. 5Different operation conditions of the monolithic multicomponent system.
a Square-wave signals received at the circular MQW-diode with zero bias. b Square-wave signals received at the circular MQW-diode with a bias voltage of 4.0 V. c Superimposed signals under the simultaneous emission-detection condition
Fig. 6Full-duplex audio communication using the monolithic multicomponent system.
a Schematic of full-duplex audio communication using light. b Audio signals received at the circular MQW-diode with zero bias. c Audio signals received at the circular MQW-diode with a bias voltage of 4.0 V. d Superimposed signals under the simultaneous emission-detection condition