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Efficient spin depolarization in ZnCdSe spin detector: an important factor limiting optical spin injection efficiency in ZnMnSe/ZnCdSe spin light-emitting structures

机译:ZnCdSe自旋检测器中的有效自旋去极化:限制ZnMnSe / ZnCdSe自旋发光结构中光学自旋注入效率的重要因素

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Spin depolarization of a ZnCdSe quantum-well spin detector (SD) in ZnMnSe/ZnCdSe light-emitting quantum structures is investigated by cw and time-resolved optical orientation spectroscopy. It is shown that spin depolarization is governed by three distinct spin relaxation processes with the corresponding polarization decay times of 850, 30, and <10 ps. The dominant and the fastest process is attributed to spin relaxation accompanying energy relaxation of hot excitons (and hot carriers) within the SD, providing evidence that it can be an important source of spin loss, leading to the observed limited efficiency of optical spin injection in the structures. (C) 2004 American Institute of Physics.
机译:通过连续波和时间分辨光学取向光谱研究了ZnMnSe / ZnCdSe发光量子结构中ZnCdSe量子阱自旋检测器(SD)的自旋去极化。结果表明,自旋去极化受三个不同的自旋弛豫过程控制,相应的极化衰减时间分别为850、30和<10 ps。主导且最快的过程归因于SD中热激子(和热载流子)伴随能量弛豫的自旋弛豫,这提供了证据表明它可能是自旋损失的重要来源,导致观察到的光学自旋注入效率有限。结构。 (C)2004美国物理研究所。

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