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首页> 外文期刊>Optical engineering >Mode confinement enhanced by exploiting epsilon-near-zero supercoupling in a mimic transverse electric hybrid phonon polariton waveguide
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Mode confinement enhanced by exploiting epsilon-near-zero supercoupling in a mimic transverse electric hybrid phonon polariton waveguide

机译:通过利用模拟横向电动混合声孔波珠比导,通过利用epsilon - 近零超耦合来增强模式限制

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摘要

New capabilities in mid- to long-wave infrared sensing and telecommunications require ultracompact waveguides that support long propagation lengths. Hybrid waveguides supporting the coupling between a dielectric strip-waveguide mode (long propagation) and a surface polariton mode (tightly confined mode) are promising candidates. Here, an infrared (λ0 = 10.6 μm) hybrid waveguide design is presented that achieves enhanced mode confinement but with minimal impact on propagation distances. Modal area confinement is enhanced by the integration of a thin layer of epsilon-near-zero material, aluminum nitride near the longitudinal optical phonon resonance, which supports supercoupling, a term that describes the effect of field enhancement caused by squeezing energy into arbitrary-sized regions. While SPhPs are inherently transverse magnetic modes, a transverse electric (TE) mode is sought to best exploit the ENZ supercoupling phenomenon. By adding a thin high index layer (GaAs) over the 4H-SiC substrate, a mimic TE mode is achieved. The epsilon-near-zero supercoupling-enhanced mimic TE hybrid SPhP waveguide presented exhibits modal confinement improvement by as much as a factor of 4 while maintaining more than 95% of the original propagation length.
机译:在长波红外传感和电信中的新功能需要超自然的波导,支持长传播长度。 Hybrid波导支持介电条波波导模式(长传播)和表面极谱模式(紧密狭窄模式)之间的耦合是有前途的候选者。这里,提出了一种红外(λ0=10.6μm)混合波导设计,其实现增强的模式限制,但对传播距离的影响最小。模态区域限制通过薄层近零材料的薄层的整合而增强,纵向光学声子谐振附近,纵向光学声子谐振件,其支持超耦合,这是一种术语,该术语描述了通过将能量挤压成任意尺寸而引起的场增强效果的术语地区。虽然SPHP是固有的横向磁模,但寻求最佳利用ENZ超耦合现象的横向电气(TE)模式。通过在4H-SiC衬底上添加薄的高折射率层(GaAs),实现了模拟TE模式。介绍的epsilon - 近零超耦合增强模拟的模拟TE杂交SPHP波导通过多达4个倍数,同时保持超过95%的原始传播长度的倍数。

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