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Abstract
方形溝の有限長lamellar grating型周期構造導波路の解析において、入力側に接続する一様導波路の厚さを溝の頂点までの厚さと同じにとる場合が多い.その場合、波長が短くなるにつれ放射波反射電力が増し、基本導波モードの反射電力R_<g1>が減少するため、その主ローブの波長特性は右上がりを示していた.一方、入力側導波路の厚さを溝の底までの厚さにとると、R_<g1>の主ローブの波長特性は全く逆の右下がりとなる.この現象を詳しく解明するため、他の形状の周期導波路についても同様に数値解析をした結果、それらの振舞いに一定の共通点が見られたので報告すると共に、その原因についても一つの定性的な説明を試みている.
In analysis of lamellar grating type periodic waveguide of finite length with rectangular groove, a uniform waveguide with same thickness as that of groove top has been usually connected to input side of periodic structure. In that case, as the wavelength becomes shorter, reflected power of radiation field increases and that of dominant guided mode R_<g1> decreases. However, in another case where the thickness of uniform waveguide is same as that of groove bottom, wavelength characteristics of R_<g1> shows inverse one to the former case. In similar numerical analyses for other kind of periodic waveguides, a common phenomenon is obtained, and one of qualitative explanation is tried for such phenomena.
Journal
- Technical report of IEICE. OPE [List of Volumes]
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Technical report of IEICE. OPE 107(465), 27-32, 2008-01-21 [Table of Contents]
The Institute of Electronics, Information and Communication Engineers