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基于阿伦方差的双调制和时间平均增强克尔旋转检测灵敏度。

Enhanced sensitivity in detection of Kerr rotation by double modulation and time averaging based on Allan variance.

作者信息

Joshua Arjun, Venkataraman V

机构信息

Department of Physics, Indian Institute of Science, Bangalore 560012, India.

出版信息

Rev Sci Instrum. 2009 Feb;80(2):023908. doi: 10.1063/1.3082056.

Abstract

Experiments in spintronics necessarily involve the detection of spin polarization. The sensitivity of this detection becomes an important factor to consider when extending the low temperature studies on semiconductor spintronic devices to room temperature, where the spin signal is weaker. In pump-probe experiments, which optically inject and detect spins, the sensitivity is often improved by using a photoelastic modulator (PEM) for lock-in detection. However, spurious signals can arise if diode lasers are used as optical sources in such experiments, along with a PEM. In this work, we eliminated the spurious electromagnetic coupling of the PEM onto the probe diode laser, by the double modulation technique. We also developed a test for spurious modulated interference in the pump-probe signal, due to the PEM. Besides, an order of magnitude enhancement in the sensitivity of detection of spin polarization by Kerr rotation, to 3x10(-8) rad was obtained by using the concept of Allan variance to optimally average the time series data over a period of 416 s. With these improvements, we are able to experimentally demonstrate at room temperature, photoinduced steady-state spin polarization in bulk GaAs. Thus, the advances reported here facilitate the use of diode lasers with a PEM for sensitive pump-probe experiments. They also constitute a step toward detection of spin-injection in Si at room temperature.

摘要

自旋电子学实验必然涉及自旋极化的检测。当将半导体自旋电子器件的低温研究扩展到室温时,这种检测的灵敏度就成为一个需要考虑的重要因素,因为在室温下自旋信号较弱。在光注入和检测自旋的泵浦 - 探测实验中,通常通过使用光弹性调制器(PEM)进行锁相检测来提高灵敏度。然而,在此类实验中,如果将二极管激光器用作光源并搭配PEM,可能会出现杂散信号。在这项工作中,我们通过双调制技术消除了PEM对探测二极管激光器的杂散电磁耦合。我们还开发了一种针对由PEM引起的泵浦 - 探测信号中的杂散调制干扰的测试方法。此外,通过使用阿伦方差的概念在416秒的时间段内对时间序列数据进行最佳平均,克尔旋转检测自旋极化的灵敏度提高了一个数量级,达到3×10⁻⁸弧度。有了这些改进,我们能够在室温下通过实验证明体 GaAs 中的光致稳态自旋极化。因此,本文报道的进展有助于将带有PEM的二极管激光器用于灵敏的泵浦 - 探测实验。它们也朝着室温下检测硅中的自旋注入迈出了一步。

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