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Time-Domain Magnetic Field-Difference Spectroscopy for Semiconductors Using Circularly Polarized Terahertz Pulses

机译:半导体使用圆极化太赫兹脉冲的时域磁场差分光谱

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摘要

We propose a simple method for sensitive magneto-optic spectroscopy in the terahertz (THz) frequency regime without the need for detecting two orthogonally polarized field components. This simple method is based on the time-domain reflection spectroscopy and employs a single circular polarization state for probing free carriers under a magnetic field that is modulated by a rotating disk with permanent magnets. The evaluated modulation signal directly reflects the FaradayKerr ellipticity and optical rotation, which are sensitive to the characteristics of free carriers in semiconductors. We present results of the magneto-optic Kerr spectroscopy on n- and p-Ge substrates with different carrier concentrations and InSb. The experimental results indicate larger Kerr ellipticity and optical rotation near the plasma frequency. Due to the Faraday effect, we also observe an enhanced modulation signal of the THz pulse reflected from the backside surface of the low-carrier-concentration sample. Numerical simulations based on a simple free-carrier model reproduce our experimental results well. Our demonstration will help to advance multipurpose characterization techniques for various semiconductors.
机译:我们提出了一种简单的方法,用于在太赫兹(THz)频率范围内进行灵敏的磁光光谱学,而无需检测两个正交极化场分量。这种简单的方法基于时域反射光谱法,并采用单个圆极化状态在磁场下探测自由载流子,该磁场由带有永久磁铁的旋转盘调制。评估后的调制信号直接反映了法拉第·柯尔椭圆率和旋光度,这对半导体中自由载流子的特性很敏感。我们介绍了具有不同载流子浓度和InSb的n-和p-Ge衬底上的磁光Kerr光谱结果。实验结果表明,较大的克尔椭圆率和接近等离子体频率的旋光度。由于法拉第效应,我们还观察到了从低载流子浓度样品的背面反射的太赫兹脉冲的增强调制信号。基于简单的自由载流子模型的数值模拟很好地再现了我们的实验结果。我们的演示将有助于推动针对各种半导体的多用途表征技术。

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