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Enhanced Terahertz Radiation Generation of Photoconductive Antennas Based on Manganese Ferrite Nanoparticles

机译:锰铁氧体纳米粒子增强光电导天线的太赫兹辐射产生

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摘要

This paper presents a significant effect of manganese ferrite nanoparticles (MnFe2O4 NPs) on the increase of the surface photoconductivity of semiconductors. Herein, the optical characterization of photo-excited carriers of silicon coated with MnFe2O4 NPs was studied by using THz time-domain spectroscopy (THz-TDs). We observed that silicon coated with MnFe2O4 NPs provided a significantly enhanced attenuation of THz radiation in comparison with bare silicon substrates under laser irradiation. The experimental results were assessed in the context of a surface band structure model of semiconductors. In addition, photoconductive antennas coated with MnFe2O4 NPs significantly improved the efficiency of THz radiation generation and signal to noise ratio of the THz signal. This work demonstrates that coating with MnFe2O4 NPs could improve the overall performance of THz systems, and MnFe2O4 NPs could be further used for the implementation of novel optical devices.
机译:本文提出了锰铁氧体纳米颗粒(MnFe2O4 NPs)对半导体表面光电导性增加的显著作用。本文中,通过使用THz时域光谱(THz-TDs)研究了涂覆有MnFe2O4 NP的硅的光激发载流子的光学特性。我们观察到,与裸露的硅衬底在激光照射下相比,涂有MnFe2O4 NP的硅提供了显着增强的THz辐射衰减。在半导体的表面能带结构模型的背景下评估了实验结果。此外,涂有MnFe2O4 NP的光电导天线显着提高了THz辐射的产生效率和THz信号的信噪比。这项工作表明用MnFe2O4 NP涂层可以改善THz系统的整体性能,并且MnFe2O4 NPs可以进一步用于实现新型光学器件。

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