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Coherent Optical Writing and Reading of the Exciton Spin State in Single Quantum Dots

机译:单量子点中激子自旋态的相干光学写和读

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We demonstrate a one-to-one correspondence between the polarization state of a light pulse tuned to neutral exciton resonances of single semiconductor quantum dots and the spin state of the exciton that it photogenerates. This is accomplished using two variably polarized and independently tuned picosecond laser pulses. The first "writes" the spin state of the resonantly excited exciton. The second is tuned to biexcitonic resonances, and its absorption is used to "read" the exciton spin state. The absorption of the second pulse depends on its polarization relative to the exciton spin direction. Changes in the exciton spin result in corresponding changes in the intensity of the photoluminescence from the biexciton lines which we monitor, obtaining thus a one-to-one mapping between any point on the Poincare sphere of the light polarization to a point on the Bloch sphere of the exciton spin.
机译:我们演示了调谐到单个半导体量子点的中性激子共振的光脉冲的偏振态与其光生激子的自旋态之间的一一对应关系。这是使用两个可变偏振且独立调谐的皮秒激光脉冲完成的。第一个“写入”共振激发激子的自旋状态。第二个调谐至双激子共振,其吸收用于“读取”激子自旋态。第二脉冲的吸收取决于其相对于激子自旋方向的极化。激子自旋的变化导致我们监测的双激子线的光致发光强度发生相应的变化,从而在光偏振的庞加莱球上的任何点到布洛赫球上的点之间获得了一对一的映射。激子自旋

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