太赫兹辐射
光电子学
量子点
材料科学
光子上转换
光学
物理
发光
作者
Jiaojian Shi,Daehan Yoo,Ferran Vidal-Codina,Chan-Wook Baik,Kyung‐Sang Cho,Ngoc-Cuong Nguyen,Hendrik Utzat,Jinchi Han,Aaron M. Lindenberg,Vladimir Bulović,Moungi G. Bawendi,J. Peraire,Sang‐Hyun Oh,Keith A. Nelson
标识
DOI:10.1038/s41565-022-01243-9
摘要
Detection of terahertz (THz) radiation has many potential applications, but presently available detectors are limited in many aspects of their performance, including sensitivity, speed, bandwidth and operating temperature. Most do not allow the characterization of THz polarization states. Recent observation of THz-driven luminescence in quantum dots offers a possible detection mechanism via field-driven interdot charge transfer. We demonstrate a room-temperature complementary metal-oxide-semiconductor THz camera and polarimeter based on quantum-dot-enhanced THz-to-visible upconversion mechanism with optimized luminophore geometries and fabrication designs. Besides broadband and fast responses, the nanoslit-based sensor can detect THz pulses with peak fields as low as 10 kV cm-1. A related coaxial nanoaperture-type device shows a to-date-unexplored capability to simultaneously record the THz polarization state and field strength with similar sensitivity.
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