Time-correlated electron and photon counting microscopy

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作者
Sotatsu Yanagimoto
Naoki Yamamoto
Tatsuro Yuge
Hikaru Saito
Keiichirou Akiba
Takumi Sannomiya
机构
[1] School of Materials and Chemical Technology,Department of Materials Science and Engineering
[2] Tokyo Institute of Technology,Department of Physics
[3] Shizuoka University,Department of Integrated Materials, Institute for Materials Chemistry and Engineering
[4] Shizuoka,Takasaki Institute for Advanced Quantum Science
[5] Kyushu University,undefined
[6] National Institutes for Quantum Science and Technology,undefined
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Electron microscopy based on high-energy electrons allows nanoscopic analytical imaging taking advantage of secondarily generated particles. Especially for cathodoluminescence, the correlation between primary incident electrons and emitted photons includes information on the entire interaction process. However, electron-photon time correlation tracking the relaxation dynamics of luminescent materials has so far not been achieved. In this work, we propose time-correlated electron and photon counting microscopy, where coincidence events of primary electrons and generated photons are counted after interaction. The electron-photon time correlation enables extracting a unique lifetime of the emitter independent of the photon state, accounting for coherent and incoherent photon generation processes. We also introduce a correlation factor and discuss the correlation between electrons and generated coherent photons. Through momentum selection, we observe correlation changes indicating the presence of pair correlation originated from the electron-photon entanglement. The present work lays the foundation for developing next-generation electron microscopy based on quantum correlation.
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