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All-electric all-semiconductor spin field-effect transistors

机译:全电动全半导体自旋场效应晶体管

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摘要

The spin field-effect transistor envisioned by Datta and Das1 opens a gateway to spin information processing2, 3. Although the coherent manipulation of electron spins in semiconductors is now possible4, 5, 6, 7, 8, the realization of a functional spin field-effect transistor for information processing has yet to be achieved, owing to several fundamental challenges such as the low spin-injection efficiency due to resistance mismatch9, spin relaxation and the spread of spin precession angles. Alternative spin transistor designs have therefore been proposed10, 11, but these differ from the field-effect transistor concept and require the use of optical or magnetic elements, which pose difficulties for incorporation into integrated circuits. Here, we present an all-electric and all-semiconductor spin field-effect transistor in which these obstacles are overcome by using two quantum point contacts as spin injectors and detectors. Distinct engineering architectures of spin–orbit coupling are exploited for the quantum point contacts and the central semiconductor channel to achieve complete control of the electron spins (spin injection, manipulation and detection) in a purely electrical manner. Such a device is compatible with large-scale integration and holds promise for future spintronic devices for information processing.
机译:Datta和Das1设想的自旋场效应晶体管为自旋信息处理2、3打开了大门。尽管现在可以对半导体中的电子自旋进行相干操纵4、5、6、7、8,但功能自旋场的实现-由于存在一些基本挑战,例如由于电阻失配引起的自旋注入效率低9,自旋弛豫和自旋进动角的扩展,因此尚未实现用于信息处理的高效晶体管。因此,已经提出了替代的自旋晶体管设计10、11,但是这些与场效应晶体管的概念不同,并且需要使用光学或磁性元件,这给结合到集成电路中带来了困难。在这里,我们介绍了一种全电和全半导体的自旋场效应晶体管,其中通过使用两个量子点触点作为自旋注入器和检测器克服了这些障碍。自旋-轨道耦合的独特工程架构被用于量子点接触和中央半导体通道,以纯电子方式实现对电子自旋的完全控制(自旋注入,操纵和检测)。这种设备与大规模集成兼容,并有望用于未来的自旋电子设备进行信息处理。

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