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首页> 外文期刊>Applied Physics A: Materials Science & Processing >Extraordinary THz transmission through subwavelength semiconductor slits under antiparallel external magnetic fields
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Extraordinary THz transmission through subwavelength semiconductor slits under antiparallel external magnetic fields

机译:反平行外部磁场下通过亚波长半导体狭缝的非凡太赫兹传输

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摘要

We theoretically study the resonant transmission of electromagnetic waves at the THz frequencies through subwavelength semiconductor slits under external static magnetic fields. The dispersion relations of the surface plasmon polaritons (SPPs) inside a subwavelength slit are analytically derived. It is found that the SPPs propagating along one direction and its reverse are symmetric when parallel external magnetic fields are applied, but are asymmetric when antiparallel external magnetic fields are applied. The transmission properties of periodic subwavelength semiconductor slit arrays with the antiparallel magnetic fields in each unit cell are investigated by the mode expansion technique. The two significant transmission characteristics are observed: (i) The resonant peaks are redshifted with increasing external magnetic fields; (ii) The transmissions in the two opposite directions through the slit arrays are asymmetric. The origin of the transmission asymmetry is reasonably explained by the magnetic-field induced asymmetric SPP propagation losses.
机译:我们从理论上研究了在外部静磁场下通过亚波长半导体狭缝以太赫兹频率产生的电磁波的共振传输。分析地推导了亚波长缝隙内表面等离子体激元(SPPs)的色散关系。发现当施加平行的外部磁场时,沿一个方向传播的SPP及其反向传播是对称的,但是当施加反平行的外部磁场时,SPP是不对称的。通过模式扩展技术研究了在每个晶胞中具有反平行磁场的周期性亚波长半导体狭缝阵列的传输特性。观察到两个重要的传输特性:(i)共振峰随着外部磁场的增加而红移; (ii)通过狭缝阵列在两个相反方向上的透射是不对称的。磁场引起的不对称SPP传播损耗可以合理地解释传输不对称的起源。

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