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Touchless Input/Output Interface for Device-to-Device Communication.

Kang FuBinju WangJianwei FuJiabin YanPengzhan LiuYongjin Wang
Published in: ACS omega (2023)
Multiple quantum well (MQW) III-nitride diodes show selectable functionalities of light-emitting and light-detecting behaviors, enabling direct touchless device-to-device communication. Here, we propose and demonstrate a touchless input/output (I/O) interface using a single MQW III-nitride diode. By integrating an MQW III-nitride diode with a memory via a control circuit, optical signals are converted into electrical ones to be written into a memory, and consequently, electrical information is read out from the memory to be translated into optical signals for visible light communication (VLC). The MQW III-nitride diode can not only lead to a touchless ″writing″ action but also offer a ″reading″ process through light. Such touchless I/O interface would provide new forms of interactivity for device-to-device communication technologies.
Keyphrases
  • visible light
  • light emitting
  • quantum dots
  • working memory
  • high resolution
  • molecular dynamics
  • mass spectrometry
  • single molecule