Gleb M. Katyba; Kirill I. Zaytsev; Sergey N. Rossolenko, Irina A. Shikunova, Sergey L. Shikunov, Dmitriy O. Stryukov, Stanislav O. Yurchenko, Vladimir N. Kurlov
https://www.spiedigitallibrary.org/conference-proceedings-of-spie/10333/103331C/Technological-aspects-of-manufacturing-terahertz-photonic-crystal-waveguides-based-on/10.1117/12.2270168.short?SSO=1
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.
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