Mitsumori Yasuyoshi, Uedaira Kentaro, Shimomura Satoshi, Edamatsu Keiichi
Opt Express. 2021 Mar 29;29(7):10386-10394. doi: 10.1364/OE.417193.
We develop a transient photoinduced Kerr rotation spectroscopy technique using a heterodyne detection scheme to study spin dynamics of microscopic quantum states in solids, such as single quantum dots and spin helixes. The use of the heterodyne beat note signal generated by the interference of the frequency-shifted probe and reference pulses realizes the Kerr rotation measurements in combination with micro-spectroscopy, even when the probe pulse propagates collinearly with the strong pump pulse, which resonantly excites the probing state. In addition, the interference gives an optical amplification of the Kerr signal, which provides a clear observation of the photoinduced spin dynamics by the weak probe intensity. Here, we present results of Kerr rotation measurements for a single quantum dot exciton, which shows a maximum rotation angle of few µrad.
我们开发了一种瞬态光致克尔旋转光谱技术,该技术采用外差检测方案来研究固体中微观量子态的自旋动力学,如单量子点和自旋螺旋。通过频移探测脉冲和参考脉冲干涉产生的外差拍频信号,即使探测脉冲与强泵浦脉冲共线传播(强泵浦脉冲共振激发探测态),也能结合显微光谱实现克尔旋转测量。此外,这种干涉会对克尔信号进行光学放大,从而能在弱探测强度下清晰观测到光致自旋动力学。在此,我们展示了单量子点激子的克尔旋转测量结果,其最大旋转角为几微弧度。