Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity

W. Shin, B. A. Yu, Y. L. Lee, T. J. Eom, Y. C. Noh, D. K. Ko, J. Lee, K. Oh

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

We propose a new type of all-fiber bandwidth tunable rejection filter using cascaded helicoidal long-period fiber gratings in single-mode optical fiber and report controllable broadband rejection characteristic with low insertion loss and polarization dependent loss.

Original languageEnglish
Title of host publicationPhotonic Applications Systems Technologies Conference, PhAST 2007
PublisherOptical Society of America
ISBN (Print)1557528349, 9781557528346
Publication statusPublished - 2007 Jan 1
EventPhotonic Applications Systems Technologies Conference, PhAST 2007 - Baltimore, MD, United States
Duration: 2007 May 82007 May 8

Other

OtherPhotonic Applications Systems Technologies Conference, PhAST 2007
CountryUnited States
CityBaltimore, MD
Period07/5/807/5/8

Fingerprint

Notch filters
rejection
gratings
bandwidth
Bandwidth
filters
fibers
Fibers
Single mode fibers
Insertion losses
insertion loss
Optical fibers
optical fibers
Polarization
broadband
polarization

All Science Journal Classification (ASJC) codes

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

Cite this

Shin, W., Yu, B. A., Lee, Y. L., Eom, T. J., Noh, Y. C., Ko, D. K., ... Oh, K. (2007). Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity. In Photonic Applications Systems Technologies Conference, PhAST 2007 Optical Society of America.
Shin, W. ; Yu, B. A. ; Lee, Y. L. ; Eom, T. J. ; Noh, Y. C. ; Ko, D. K. ; Lee, J. ; Oh, K. / Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity. Photonic Applications Systems Technologies Conference, PhAST 2007. Optical Society of America, 2007.
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abstract = "We propose a new type of all-fiber bandwidth tunable rejection filter using cascaded helicoidal long-period fiber gratings in single-mode optical fiber and report controllable broadband rejection characteristic with low insertion loss and polarization dependent loss.",
author = "W. Shin and Yu, {B. A.} and Lee, {Y. L.} and Eom, {T. J.} and Noh, {Y. C.} and Ko, {D. K.} and J. Lee and K. Oh",
year = "2007",
month = "1",
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language = "English",
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booktitle = "Photonic Applications Systems Technologies Conference, PhAST 2007",
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Shin, W, Yu, BA, Lee, YL, Eom, TJ, Noh, YC, Ko, DK, Lee, J & Oh, K 2007, Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity. in Photonic Applications Systems Technologies Conference, PhAST 2007. Optical Society of America, Photonic Applications Systems Technologies Conference, PhAST 2007, Baltimore, MD, United States, 07/5/8.

Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity. / Shin, W.; Yu, B. A.; Lee, Y. L.; Eom, T. J.; Noh, Y. C.; Ko, D. K.; Lee, J.; Oh, K.

Photonic Applications Systems Technologies Conference, PhAST 2007. Optical Society of America, 2007.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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T1 - Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity

AU - Shin, W.

AU - Yu, B. A.

AU - Lee, Y. L.

AU - Eom, T. J.

AU - Noh, Y. C.

AU - Ko, D. K.

AU - Lee, J.

AU - Oh, K.

PY - 2007/1/1

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N2 - We propose a new type of all-fiber bandwidth tunable rejection filter using cascaded helicoidal long-period fiber gratings in single-mode optical fiber and report controllable broadband rejection characteristic with low insertion loss and polarization dependent loss.

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M3 - Conference contribution

SN - 1557528349

SN - 9781557528346

BT - Photonic Applications Systems Technologies Conference, PhAST 2007

PB - Optical Society of America

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Shin W, Yu BA, Lee YL, Eom TJ, Noh YC, Ko DK et al. Bandwidth tunable band rejection filter based on helicoidal fiber grating pair of opposite hellicity. In Photonic Applications Systems Technologies Conference, PhAST 2007. Optical Society of America. 2007