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Technological aspects of manufacturing terahertz photonic crystal waveguides based on sapphire shaped crystals

机译:基于蓝宝石形晶体制造太赫兹光子晶体波导的技术方面

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Recently, terahertz (THz) photonic crystal waveguides based on sapphire shaped crystals have been proposed. These waveguides combine unique properties of sapphire with advantages of the edge-defined film-fed growth (EFG) or Stepanov technique of shaped crystal growth and allow guiding THz waves in a wide spectral range with small dispersion and losses. The sapphire photonic crystal waveguides are capable for operation in aggressive environment, which makes possible to perform high-temperature and high-pressure THz measurements, as well as THz measurements of aggressive chemicals. In this paper, the technological aspects of sapphire THz photonic crystal waveguide manufacturing by the EFG/Stepanov technique (including, the problems of seeding and automated control of multichannel shaped crystal growth) have been described. Prospective applications of sapphire photonic crystal waveguides in various branches of THz science and technology have been discussed.
机译:最近,已经提出了基于蓝宝石形晶体的太赫兹(THz)光子晶体波导。这些波导将蓝宝石的独特性能与边缘限定的薄膜馈送生长(EFG)或异型晶体生长的Stepanov技术的优势结合在一起,并可以在宽光谱范围内引导THz波,且色散和损耗小。蓝宝石光子晶体波导能够在侵蚀性环境中工作,这使得执行高温高压THz测量以及侵蚀性化学物质的THz测量成为可能。在本文中,已经描述了通过EFG / Stepanov技术制造蓝宝石THz光子晶体波导的技术方面(包括种晶和多通道异型晶体生长的自动控制问题)。讨论了蓝宝石光子晶体波导在太赫兹科学技术的各个分支中的预期应用。

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