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Polymer-Based Long-Range Surface Plasmon Polariton Waveguides for 10-Gbps Optical Signal Transmission Applications

机译:适用于10 Gbps光信号传输应用的基于聚合物的远程表面等离激元极化波导

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We present characteristics of very thin Au strip waveguides based on long-range surface plasmon polaritons (LR-SPPs) along thin Au strips embedded in polymers. We also report a 10 Gbps optical signal transmission via LR-SPPs with the pig-tailed Au strip waveguide at a telecommunication wavelength of 1.55 $mu{hbox {m}}$. We limited the thickness, width, and length up to $sim$20nm, $sim {hbox {10}} mu{hbox {m}}$, and $sim$5 cm, respectively, for practical applications. At 1.55 $mu{hbox {m}}$, loss properties of the Au strip waveguides were theoretically and experimentally evaluated with thickness, width and cladding material. The lowest propagation loss of $sim$1.4dB/cm was experimentally obtained with the 14-nm-thick and 2- $mu{hbox {m}}$-wide Au strip. With a single-mode fiber, the lowest coupling loss of less than 0.1 dB/facet was achieved with the 14-nm-thick and 7.5-$mu{hbox {m}}$-wide Au strip. The lowest insertion loss was obtained 7.7dB with the 14-nm-thick, 5-$mu{hbox {m}}$-wide, and 1.5-cm-long Au strip. The propagation loss was improved approximately 30% for the 17-nm-thick Au strip with lowering the refractive index of the cladding polymer by 0.01. In the 10 Gbps optical signal transmission experiment, the LR-SPP waveguide exhibits an excellent eye opening and a 2.2 dB power penalty at $10^{-12}$ bit error rate. These all results indicate that the LR-SPP waveguide is a potential transmission line for optical interconnects to over-come inherent problems in electric interconnects.
机译:我们介绍了基于长距离表面等离振子极化子(LR-SPPs)的超薄金条形波导的特性,沿着嵌入聚合物中的金薄条。我们还报告了在电信波长为1.55μmu{hbox {m}} $的情况下,通过带有猪尾Au条形波导的LR-SPPs进行的10 Gbps光信号传输。对于实际应用,我们将厚度,宽度和长度分别限制为$ sim $ 20nm,$ sim {hbox {10}} mu {hbox {m}} $和$ sim $ 5 cm。在1.55μmu{hbox {m}} $处,使用厚度,宽度和包层材料对Au条形波导的损耗特性进行了理论和实验评估。实验获得了最小的传播损耗$ sim $ 1.4dB / cm,这是通过使用14 nm厚和2-μmu{hbox {m}} $宽的Au带进行的。对于单模光纤,使用14纳米厚和7.5μm宽的Au条带实现了低于0.1 dB /小面的最低耦合损耗。在14纳米厚,5微米长和1.5厘米长的Au条带中,插入损耗最低,为7.7dB。对于17纳米厚的Au带,其传输损耗提高了大约30%,而包层聚合物的折射率却降低了0.01。在10 Gbps的光信号传输实验中,LR-SPP波导在$ 10 ^ {-12} $的误码率下具有出色的眼图张开性和2.2 dB的功率损失。所有这些结果表明,LR-SPP波导是光互连的潜在传输线,可以克服电互连中的固有问题。

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