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

机译:单量子环中的光控光学AHARONOV-BOHM振荡

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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.
机译:我们发现,单个GaAs / GaAias量子环中的光学AHARONOV-BOHM振荡可以通过激励强度来控制。 由于弱激发强度为1.2千瓦厘米(-2),观察到Biexcitons的光学Aharonov-BoHM振荡周期是根据预期的双激子Wigner分子的期间为激子的一半。 当激发强度增加一级(12kWcm(-2))时,发生振荡周期和激子和Biexcitons的振荡周期和抗磁系数的逐渐偏离,并且具有光谱偏移。 这些结果表明,通过光透射载波通过光强度来修改单量子环中电子和孔的有效轨道半径和孔,这可能被捕获在导致局部电场的界面缺陷。

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