Light Controlled Optical Aharonov-Bohm Oscillations in a Single Quantum Ring

Authors
Kim, HeedaePark, SeonghoOkuyama, RinKyhm, KwangseukEto, MikioTaylor, Robert A.Nogues, GillesDang, Le SiPotemski, MarekJe, KoochulKim, JongsuKyhm, JihoonSong, Jindong
Issue Date
2018-10
Publisher
AMER CHEMICAL SOC
Citation
NANO LETTERS, v.18, no.10, pp.6188 - 6194
Abstract
We found that optical Aharonov-Bohm oscillations in a single GaAs/GaAIAs quantum ring can be controlled by excitation intensity. With a weak excitation intensity of 1.2 kW cm(-2), the optical Aharonov-Bohm oscillation period of biexcitons was observed to be half that of excitons in accordance with the period expected for a two-exciton Wigner molecule. When the excitation intensity is increased by an order of magnitude (12 kW cm(-2)), a gradual deviation of the Wigner molecule condition occurs with decreased oscillation periods and diamagnetic coefficients for both excitons and biexcitons along with a spectral shift. These results suggest that the effective orbit radii and rim widths of electrons and holes in a single quantum ring can be modified by light intensity via photoexcited carriers, which are possibly trapped at interface defects resulting in a local electric field.
Keywords
WIGNER MOLECULE; DROPLET EPITAXY; STATES; SPECTROSCOPY; DOTS; WIGNER MOLECULE; DROPLET EPITAXY; STATES; SPECTROSCOPY; DOTS; Quantum rings; excitons; Aharonov-Bohm effect; photoluminescence; light excitation
ISSN
1530-6984
URI
https://pubs.kist.re.kr/handle/201004/120843
DOI
10.1021/acs.nanolett.8b02131
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KIST Article > 2018
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