4.5 Article

Characteristics of Effective-Medium-Clad Dielectric Waveguides

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TTHZ.2020.3023917

关键词

Optical waveguides; Silicon; Dispersion; Dielectrics; Permittivity; Crosstalk; Bending; cross-coupling; crossing; crosstalk; dispersion characteristics; effective medium; integrated platform; terahertz

资金

  1. Australian Research Council [ARC DP180103561]
  2. Core Research for Evolutional Science and Technology program of the Japan Science and Technology Agency [JPMJCR1534]

向作者/读者索取更多资源

Effective-medium-clad dielectric waveguides are constructed in a high-resistivity float-zone silicon wafer, with claddings defined by deep subwavelength perforations. These waveguides support both E-11(x) and E-11(y) modes with low loss and low dispersion. The investigation extends to analyzing dispersion, cross-polarization, crosstalk, bends, and crossings over an operation frequency range of 220-330 GHz (WR-3 band).
Effective-medium-clad dielectric waveguides are purely built into a single high-resistivity float-zone silicon wafer with their claddings defined by deep subwavelength perforations. The waveguides are substrate-free while supporting both E-11(x) and E-11(y) modes with low loss and low dispersion. This article extends the investigations of the waveguides by analyzing the dispersion, cross-polarization, and crosstalk together with the characteristics of bends and crossings over an operation frequency range of 220-330 GHz (WR-3 band). Taking the E-11(x) mode as an example, the experimental results show an average measured attenuation coefficient of 0.075 dB/cm and a group velocity dispersion ranging from around +/- 10 ps/THz/mm across the whole band. A crosstalk level below -10 dB is measured for parallel waveguides with a separation of 0.52 lambda(0) at 300 GHz. The realized waveguides show a bending loss ranging from 0.500 to 0.025 dB per bend and a crosstalk at crossing below -15 dB from 220 to 330 GHz. Due to the different dispersion characteristics, the E-11(y) mode has similar performances but with its operation frequency range reduced to 260-330 GHz. Limited by the measurement setup, a cross-coupling between the E-11(x) and E-11(y) modes is measured to be below -20 dB over the whole band. This in-depth investigation of effective-medium-clad waveguides will form a basis for terahertz-integrated platforms.

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