Chinese Optics Letters, Volume. 14, Issue 7, 072701(2016)
Correction of the second-order degree of coherence measurement
Fig. 1. Schemes to measure
Fig. 2. Schematics of the experimental configuration with a home-built confocal microscope setup and HBT measurement. The diamond sample with a NV center on the piezo-stage (PZT) was excited by a continuous laser (
Fig. 3. Results from the prototype measurement with tunable electronic delay (large red dots, obtained by averaging the results of several repeated measurements) and the TAC-MCA system (small black dots). (a) The inset shows the measurement results with
Fig. 4. Measurement results from the prototype measurement with tunable electronic delay (large dots) and TAC-MCA system (small dots) with different counting rates of the stop channel (
Fig. 5. (a) shows the fitting result of
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Congcong Li, Xiangdong Chen, Shen Li, Fangwen Sun, "Correction of the second-order degree of coherence measurement," Chin. Opt. Lett. 14, 072701 (2016)
Category: Quantum optics
Received: Dec. 23, 2015
Accepted: May. 5, 2016
Published Online: Aug. 3, 2018
The Author Email: Xiangdong Chen (xdch@ustc.edu.cn)