去相
固态
共发射极
量子
凝聚态物理
物理
材料科学
量子力学
光电子学
工程物理
作者
Alexander Thoma,Peter Schnauber,Manuel Gschrey,M. Seifried,Janik Wolters,J.-H. Schulze,A. Strittmatter,Sven Rodt,Alexander Carmele,Andreas Knorr,Tobias Heindel,Stephan Reitzenstein
标识
DOI:10.1103/physrevlett.116.033601
摘要
We probe the indistinguishability of photons emitted by a semiconductor quantum dot (QD) via time- and temperature-dependent two-photon interference (TPI) experiments. An increase in temporal separation between consecutive photon emission events reveals a decrease in TPI visibility on a nanosecond time scale, theoretically described by a non-Markovian noise process in agreement with fluctuating charge traps in the QD's vicinity. Phonon-induced pure dephasing results in a decrease in TPI visibility from (96±4)% at 10 K to a vanishing visibility at 40 K. In contrast to Michelson-type measurements, our experiments provide direct access to the time-dependent coherence of a quantum emitter on a nanosecond time scale.
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