Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss

Publication: Research - peer-reviewArticle in proceedings – Annual report year: 2004

Standard

Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss. / Harpøth, Anders; Frandsen, Lars Hagedorn; Kristensen, Martin; Borel, Peter Ingo; Jensen, Jakob Søndergaard; Sigmund, Ole; Shi, Peixiong.

In: Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto : Kyoto University, 2004.

Publication: Research - peer-reviewArticle in proceedings – Annual report year: 2004

Harvard

Harpøth, A, Frandsen, LH, Kristensen, M, Borel, PI, Jensen, JS, Sigmund, O & Shi, P 2004, 'Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss'. in: Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto University, Kyoto.

APA

Harpøth, A., Frandsen, L. H., Kristensen, M., Borel, P. I., Jensen, J. S., Sigmund, O., & Shi, P. (2004). Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss. In: Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto: Kyoto University.

CBE

Harpøth A, Frandsen LH, Kristensen M, Borel PI, Jensen JS, Sigmund O, Shi P. 2004. Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss. In Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto: Kyoto University.

MLA

Harpøth, Anders et al. "Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss". In: Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto: Kyoto University. 2004.

Vancouver

Harpøth A, Frandsen LH, Kristensen M, Borel PI, Jensen JS, Sigmund O et al. Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss. In: Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto: Kyoto University. 2004.

Author

Harpøth, Anders; Frandsen, Lars Hagedorn; Kristensen, Martin; Borel, Peter Ingo; Jensen, Jakob Søndergaard; Sigmund, Ole; Shi, Peixiong / Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss.

In: Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V. Kyoto : Kyoto University, 2004.

Publication: Research - peer-reviewArticle in proceedings – Annual report year: 2004

Bibtex

@inbook{e69bda29e4844233845d41ee358a0fef,
title = "Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss",
publisher = "Kyoto University",
author = "Anders Harpøth and Frandsen, {Lars Hagedorn} and Martin Kristensen and Borel, {Peter Ingo} and Jensen, {Jakob Søndergaard} and Ole Sigmund and Peixiong Shi",
year = "2004",
booktitle = "Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V",

}

RIS

TY - GEN

T1 - Fabrication of topology optimized photonic crystal waveguide Z-bend displaying large bandwidth with very low bend loss

A1 - Harpøth,Anders

A1 - Frandsen,Lars Hagedorn

A1 - Kristensen,Martin

A1 - Borel,Peter Ingo

A1 - Jensen,Jakob Søndergaard

A1 - Sigmund,Ole

A1 - Shi,Peixiong

AU - Harpøth,Anders

AU - Frandsen,Lars Hagedorn

AU - Kristensen,Martin

AU - Borel,Peter Ingo

AU - Jensen,Jakob Søndergaard

AU - Sigmund,Ole

AU - Shi,Peixiong

PB - Kyoto University

CY - Kyoto

PY - 2004

Y1 - 2004

N2 - We have designed, simulated and fabricated a photonic crystal waveguide Z-bend, which displays a total bend loss of ~1dB per bend in a wavelength range of more than 200nm. The fabricated component performs in excellent agreement with 3D finite-difference time-domain calculations.

AB - We have designed, simulated and fabricated a photonic crystal waveguide Z-bend, which displays a total bend loss of ~1dB per bend in a wavelength range of more than 200nm. The fabricated component performs in excellent agreement with 3D finite-difference time-domain calculations.

BT - Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V

T2 - Procedings of International Symposium on Photonic and Electromagnetic Crystal Structures PECS-V

ER -