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Stimulated Emission-Controlled Photonic Transistor on a Single Organic Triblock Nanowire.

Kang WangWenqing ZhangZhenhua GaoYongli YanXianqing LinHaiyun DongChunhuan ZhangWei ZhangJiannian YaoYong Sheng Zhao
Published in: Journal of the American Chemical Society (2018)
In this work, we demonstrate a stimulated emission-controlled photonic transistor on a single organic triblock nanowire composed of alternate energy donor and acceptor. The population of acceptor excitons was engineered by energy transfer to achieve enhanced fluorescence, which was further amplified by the stimulated emission of the donor and the optical feedback in the nanowire microcavities, yielding a remarkable nonlinear amplification of the acceptor emission. On this basis, a prototype of photonic transistor with high nonlinear gain at very low pump energy was achieved. The results will provide a useful enlightenment for the rational design of novel all-optical switches with desired performances.
Keyphrases
  • energy transfer
  • high speed
  • quantum dots
  • room temperature
  • high resolution
  • solid state
  • solar cells
  • water soluble
  • mass spectrometry
  • nucleic acid
  • ionic liquid
  • single molecule