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用于加密光电子逻辑电路的非易失性范德华异质结构光电晶体管。

Nonvolatile van der Waals Heterostructure Phototransistor for Encrypted Optoelectronic Logic Circuit.

作者信息

Wang Shuang, Pan Xuan, Lyu Lingyuan, Wang Chen-Yu, Wang Pengfei, Pan Chen, Yang Yuekun, Wang Cong, Shi Jingwen, Cheng Bin, Yu Wentao, Liang Shi-Jun, Miao Feng

机构信息

Institute of Brain-Inspired Intelligence, National Laboratory of Solid State Microstructures, School of Physics, Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210093, China.

Physics Department, Harvey Mudd College, Claremont, California 91711, United States.

出版信息

ACS Nano. 2022 Mar 22;16(3):4528-4535. doi: 10.1021/acsnano.1c10978. Epub 2022 Feb 15.

Abstract

With the rising demand for information security, there has been a surge of interest in harnessing the intrinsic physical properties of device for designing a secure logic circuit. Here we provide an innovative approach to realize the secure optoelectronic logic circuit based on nonvolatile van der Waals (vdW) heterostructure phototransistors. The phototransistors comprising WSe and h-BN flakes exhibit electrical tunability of nonvolatile conductance under cooperative operations of electrical and light stimulus. This intriguing feature allows the phototransistor to work as a building block for the design of secure optoelectronic logic circuit in which the information encryption can be directly achieved with a designed secret key. On the basis of this approach, we assemble two phototransistors into an optoelectronic hybrid circuit and implement a functionally complete set of logic gates (i.e., NOR, XOR, and NAND) in a reconfigurable manner. Our findings highlight the potential of nonvolatile phototransistors for the development of reconfigurable secure optoelectronic circuits.

摘要

随着对信息安全需求的不断增加,利用器件的固有物理特性来设计安全逻辑电路的兴趣激增。在此,我们提供一种创新方法,以实现基于非易失性范德华(vdW)异质结构光电晶体管的安全光电逻辑电路。由WSe和h-BN薄片组成的光电晶体管在电刺激和光刺激的协同操作下表现出非易失性电导的电可调性。这一有趣特性使光电晶体管能够作为构建安全光电逻辑电路的基本元件,在该电路中,信息加密可通过设计的密钥直接实现。基于此方法,我们将两个光电晶体管组装成一个光电混合电路,并以可重构的方式实现了一套功能完整的逻辑门(即或非门、异或门和与非门)。我们的研究结果突出了非易失性光电晶体管在开发可重构安全光电电路方面的潜力。

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