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首页> 外文期刊>Plasmonics >Ultracompact Slow Surface Plasmon Polaritons Superlattice with Broad Bandwidth and Super-High Normalized Delay-Bandwidth Product
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Ultracompact Slow Surface Plasmon Polaritons Superlattice with Broad Bandwidth and Super-High Normalized Delay-Bandwidth Product

机译:超紧凑慢表面等离激元超晶格,具有宽带宽和超高归一化延迟带宽积

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摘要

In this paper, we propose an ultracompact low-loss plasmonic superlattice for slow surface plasmon polaritons. The superlattice consists of a two-dimensional metal gap waveguide (Ag-SiO_2-Ag) inserted with thin metal films working as coupled reflectors. Theoretical calculations indicate that the device is working on a broad bandwidth of 37 THz including the two telecom wavelengths of 1,310 and 1,550 nm and with mean group refractive index of 3.5 and mean transmission of 60 %. As the total geometric thickness is only 1.6 μm, the normalized delay-bandwidth product of the superlattice is as high as 0.44. All the theoretical prediction based upon the transfer matrix method is validated by the finite-difference time-domain numerical simulation on surface plasmon polaritons propagating in the superlattice.
机译:在本文中,我们提出了一种用于慢速表面等离子体激元的超紧凑型低损耗等离子体超晶格。超晶格由二维金属间隙波导(Ag-SiO_2-Ag)组成,该间隙中插入了用作耦合反射器的薄金属膜。理论计算表明,该设备在37 THz的宽带宽上工作,包括1,310和1,550 nm的两个电信波长,平均群折射率为3.5,平均传输率为60%。由于总几何厚度仅为1.6μm,因此超晶格的归一化延迟带宽积高达0.44。在超晶格中传播的表面等离激元极化子的有限差分时域数值模拟验证了所有基于传递矩阵法的理论预测。

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