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Plasmonics for THz frequency applications

机译:太赫兹频率应用的等离子

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In this contribution we concentrate on two aspects of THz science related to surface and particle plasmons. Firstly, we report on the generation of THz pulses via irradiation of arrays of silver nanoparticles by femtosecond laser pulses. We propose that this effect arises from the emission of photoelectrons by multi-photon excitation and subsequent acceleration of these emitted electrons by ponderomotive forces associated with the optical fields of the plasmons in the metallic nanostructures. Secondly, we demonstrate that semiconductors supports strongly confined surface plasmons in the THz frequency range. We show that these SPs can be utilized to enhance the light-matter interaction with dielectric layers above the semiconductor surface, thereby allowing us to detect the presence of layers around one thousand times thinner than the free space wavelength of the THz light. We discuss the viability of using semiconductor SPs for the purposes of THz sensing and spectroscopy.
机译:在这项贡献中,我们集中在涉及表面和粒子等离激元的太赫兹科学的两个方面。首先,我们报告了飞秒激光脉冲辐照银纳米颗粒阵列产生太赫兹脉冲的过程。我们提出,这种影响源自多光子激发所产生的光电子的发射,以及随后由与金属纳米结构中的等离激元的光场相关的质动力产生的这些发射电子的加速。其次,我们证明了半导体在太赫兹频率范围内支持强约束表面等离子体激元。我们表明,这些SP可以用于增强与半导体表面上方介电层的光-质相互作用,从而使我们能够检测到比THz光的自由空间波长薄约一千倍的层的存在。我们讨论了将半导体SP用于THz感测和光谱学的可行性。

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