In this paper, we have investigated a new structure which combines dielectric cylinders with air-hole cylinders array, and analyzed the guiding problem for periodically dielectric waveguides by arbitrary shape of dielectric constants in the middle layer. In the numerical analysis, we examined an influence of the dielectric circular cylinder along a middle layer by using the energy distribution and complex propagation constants at the first stop band region compared with hollow dielectric cylinder. In addition, we also investigated the influence of dielectric structure with equivalence cross section compared with dielectric cylinders, and clarified an influence of dielectric structures in the middle layer by energy distribution analysis for TE0 mode.
Ryosuke OZAKI
Nihon University
Tsuneki YAMASAKI
Nihon University
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Ryosuke OZAKI, Tsuneki YAMASAKI, "Energy Distribution of Periodically Dielectric Waveguides by Arbitrary Shape of Dielectric Constants — The Influence of Dielectric Structures in the Middle Layer —" in IEICE TRANSACTIONS on Electronics,
vol. E99-C, no. 7, pp. 820-824, July 2016, doi: 10.1587/transele.E99.C.820.
Abstract: In this paper, we have investigated a new structure which combines dielectric cylinders with air-hole cylinders array, and analyzed the guiding problem for periodically dielectric waveguides by arbitrary shape of dielectric constants in the middle layer. In the numerical analysis, we examined an influence of the dielectric circular cylinder along a middle layer by using the energy distribution and complex propagation constants at the first stop band region compared with hollow dielectric cylinder. In addition, we also investigated the influence of dielectric structure with equivalence cross section compared with dielectric cylinders, and clarified an influence of dielectric structures in the middle layer by energy distribution analysis for TE0 mode.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/transele.E99.C.820/_p
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@ARTICLE{e99-c_7_820,
author={Ryosuke OZAKI, Tsuneki YAMASAKI, },
journal={IEICE TRANSACTIONS on Electronics},
title={Energy Distribution of Periodically Dielectric Waveguides by Arbitrary Shape of Dielectric Constants — The Influence of Dielectric Structures in the Middle Layer —},
year={2016},
volume={E99-C},
number={7},
pages={820-824},
abstract={In this paper, we have investigated a new structure which combines dielectric cylinders with air-hole cylinders array, and analyzed the guiding problem for periodically dielectric waveguides by arbitrary shape of dielectric constants in the middle layer. In the numerical analysis, we examined an influence of the dielectric circular cylinder along a middle layer by using the energy distribution and complex propagation constants at the first stop band region compared with hollow dielectric cylinder. In addition, we also investigated the influence of dielectric structure with equivalence cross section compared with dielectric cylinders, and clarified an influence of dielectric structures in the middle layer by energy distribution analysis for TE0 mode.},
keywords={},
doi={10.1587/transele.E99.C.820},
ISSN={1745-1353},
month={July},}
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TY - JOUR
TI - Energy Distribution of Periodically Dielectric Waveguides by Arbitrary Shape of Dielectric Constants — The Influence of Dielectric Structures in the Middle Layer —
T2 - IEICE TRANSACTIONS on Electronics
SP - 820
EP - 824
AU - Ryosuke OZAKI
AU - Tsuneki YAMASAKI
PY - 2016
DO - 10.1587/transele.E99.C.820
JO - IEICE TRANSACTIONS on Electronics
SN - 1745-1353
VL - E99-C
IS - 7
JA - IEICE TRANSACTIONS on Electronics
Y1 - July 2016
AB - In this paper, we have investigated a new structure which combines dielectric cylinders with air-hole cylinders array, and analyzed the guiding problem for periodically dielectric waveguides by arbitrary shape of dielectric constants in the middle layer. In the numerical analysis, we examined an influence of the dielectric circular cylinder along a middle layer by using the energy distribution and complex propagation constants at the first stop band region compared with hollow dielectric cylinder. In addition, we also investigated the influence of dielectric structure with equivalence cross section compared with dielectric cylinders, and clarified an influence of dielectric structures in the middle layer by energy distribution analysis for TE0 mode.
ER -