Self assembled periodicity in a liquid filled hollow optical fiber

Kyunghwan Oh, Hojoong Jung, Sohee An, Yongmin Jung

Research output: Contribution to journalConference article

Abstract

A novel route to form a periodic structure was observed in a liquid filled hollow optical fiber. Highly reproducible liquid-air and polymer-air periodic structures were fabricated inside hollow fiber by traversing a local heat source, and irradiating UV light, respectively. Their photonic and optofluidic applications are explored.

Original languageEnglish
JournalOptics InfoBase Conference Papers
Publication statusPublished - 2010 Dec 1
EventFrontiers in Optics, FiO 2010 - Rochester, NY, United States
Duration: 2010 Oct 242010 Oct 28

Fingerprint

Periodic structures
Optical fibers
periodic variations
hollow
optical fibers
liquid air
Liquids
liquids
heat sources
Air
Ultraviolet radiation
Photonics
routes
photonics
fibers
Fibers
air
polymers
Polymers
Hot Temperature

All Science Journal Classification (ASJC) codes

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

Cite this

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title = "Self assembled periodicity in a liquid filled hollow optical fiber",
abstract = "A novel route to form a periodic structure was observed in a liquid filled hollow optical fiber. Highly reproducible liquid-air and polymer-air periodic structures were fabricated inside hollow fiber by traversing a local heat source, and irradiating UV light, respectively. Their photonic and optofluidic applications are explored.",
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Self assembled periodicity in a liquid filled hollow optical fiber. / Oh, Kyunghwan; Jung, Hojoong; An, Sohee; Jung, Yongmin.

In: Optics InfoBase Conference Papers, 01.12.2010.

Research output: Contribution to journalConference article

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AU - Oh, Kyunghwan

AU - Jung, Hojoong

AU - An, Sohee

AU - Jung, Yongmin

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AB - A novel route to form a periodic structure was observed in a liquid filled hollow optical fiber. Highly reproducible liquid-air and polymer-air periodic structures were fabricated inside hollow fiber by traversing a local heat source, and irradiating UV light, respectively. Their photonic and optofluidic applications are explored.

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M3 - Conference article

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JF - Optics InfoBase Conference Papers

SN - 2162-2701

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