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Ultrafast and low-power optoelectronic infrared-to-visible upconversion devices 被引量:1

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摘要 Photon upconversion with transformation of low-energy photons to high-energy photons has been widely studied and especially applied in biomedicine for sensing, stimulation, and imaging. Conventional upconversion materials rely on nonlinear luminescence processes, suffering from long decay lifetime or high excitation power. Here,we present a microscale, optoelectronic infrared-to-visible upconversion device design that can be excited at low power(1–100 mW∕cm^2). By manipulating device geometry, illumination position, and temperature, the device luminescence decay lifetime can be tuned from tens to hundreds of nanoseconds. Based on carrier transportation and circuit dynamics, theoretical models are established to understand the transient behaviors. Compared with other mechanisms, the optoelectronic upconversion approach demonstrates the shortest luminescence lifetime with the lowest required excitation power, owing to its unique photon–electron conversion process. These features are expected to empower the device with essential capabilities for versatile applications as high-performance light emitters.
出处 《Photonics Research》 SCIE EI CSCD 2019年第10期1161-1168,共8页 光子学研究(英文版)
基金 National Natural Science Foundation of China(NSFC)(51602172,61874064) Beijing Institute of Technology Research Fund Program for Young Scholars(3040012221906) Beijing Innovation Center for Future Chips,Tsinghua University Beijing National Research Center for Information Science and Technology(BNR2019ZS01005).
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