| Literature DB >> 28571308 |
Ze-Sheng Chen1,2, Ben Ma2,3,4, Xiang-Jun Shang2,3,4, Hai-Qiao Ni2,3,4, Jin-Liang Wang1, Zhi-Chuan Niu5,6,7.
Abstract
A pronounced high count rate of single-photon emission at the wavelength of 1.3 μm that is capable of fiber-based quantum communication from InAs/GaAs bilayer quantum dots coupled with a micropillar (diameter ~3 μm) cavity of distributed Bragg reflectors was investigated, whose photon extraction efficiency has achieved 3.3%. Cavity mode and Purcell enhancement have been observed clearly in microphotoluminescence spectra. At the detection end of Hanbury-Brown and Twiss setup, the two avalanched single-photon counting modules record a total count rate of ~62,000/s; the time coincidence counting measurement demonstrates single-photon emission, with the multi-photon emission possibility, i.e., g 2(0), of only 0.14.Entities:
Keywords: High emission rate; Micropillar; Single-photon source; Telecom wavelength
Year: 2017 PMID: 28571308 PMCID: PMC5451377 DOI: 10.1186/s11671-017-2153-2
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 2a SEM image of the micropillar structure (diameter ~3 μm). b Typical PL spectrum of a single BQD in micropillar at 4 K. d Temperature-dependent μPL spectra of a typical BQD in micropillar and c its integrated PL intensity as a function of the exciton-cavity detuning under excitation power ~2 μW, red line: Lorentzian fitting
Fig. 11 × 1 μm2 atomic force microscopy (AFM) image of uncapped BQDs grown at a 480 and b 470 °C. c μPL spectra of BQDs embedded in DBR cavities, grown at 480 °C (red) and 470 °C (black), measured at 4 K. d Reflectivity spectrum of the bottom DBR, measured at room temperature
Fig. 3a Excitation power-dependent μPL spectra (T = 4 K) of typical BQDs in micropillar. b Integrated PL intensity of exciton (X) and charged exciton (X*) as a function of excitation power in a log-log scale. Colored lines: linear fitting of the experimental data
Fig. 4a Time-resolved measurements on (white circle) and off (black circle) resonant of the X line in micropillar, which reveal a Purcell factor of F p = 1.9. b, d Second-order correlation function g (2)(τ) for the X line under cw excitation and 80 MHz pulse laser excitation at saturated pump power. c, e Pump power-dependent PL intensity of exciton peak at 1325.6 nm under cw and pulse excitation, respectively. The black circles in c and e denote the count rate recorded at the InGaAs detectors