DocumentCode :
878884
Title :
Room temperature single-photon Source:Single-dye molecule fluorescence in Liquid Crystal host
Author :
Lukishova, Svetlana G. ; Schmid, Ansgar W. ; McNamara, Andrew J. ; Boyd, Robert W. ; Stroud, Carlos R., Jr.
Author_Institution :
Inst. of Opt., Univ. of Rochester, NY, USA
Volume :
9
Issue :
6
fYear :
2003
Firstpage :
1512
Lastpage :
1518
Abstract :
We report on new approaches toward an implementation of an efficient, room temperature, deterministically polarized, single-photon source (SPS) on demand-a key hardware element for quantum information and quantum communication. Operation of a room temperature SPS is demonstrated via photon antibunching in the fluorescence from single terrylene-dye molecules embedded in a cholesteric liquid crystal host. Using oxygen-depleted liquid crystal hosts, dye-bleaching was avoided over the course of more than 1 h of continuous 532-nm excitation. Liquid crystal hosts (including liquid crystal oligomers/polymers) permit further increase of the efficiency of the source: 1) by aligning the dye molecules along a direction preferable for maximum excitation efficiency; 2) by tuning a one-dimensional (1-D) photonic-band-gap microcavity of planar-aligned cholesteric (chiral nematic) liquid crystal layer to the dye fluorescence band.
Keywords :
cholesteric liquid crystals; dyes; fluorescence; light polarisation; light sources; liquid crystal polymers; microcavities; nematic liquid crystals; optical materials; optical tuning; photon antibunching; photonic band gap; quantum communication; 532 nm; 532-nm excitation; chiral nematic liquid crystal layer; cholesteric liquid crystal host; deterministically polarized single photon source; dye bleaching; dye fluorescence band; hardware element; liquid crystal oligomers/polymers; maximum excitation efficiency; oxygen-depleted liquid crystal host; photon antibunching; photonic-band-gap microcavity tuning; planar-aligned cholesteric liquid crystal layer; quantum communication; quantum information; room temperature single-photon source; single terrylene-dye molecules; single-dye molecule fluorescence; Fluorescence; Hardware; Liquid crystal polymers; Liquid crystals; Optical attenuators; Optical computing; Photonic crystals; Polarization; Quantum computing; Temperature;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2003.820944
Filename :
1263783
Link To Document :
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