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title:(Photonic AND crystal AND fibers AND and AND applications)

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1 Conference paper

Photonic crystal fibers and applications

Year: 2004

Language: English

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2 Conference paper

Photonic crystal fiber modelling and applications

Bjarklev, Anders Overgaard; Broeng, Jes; Libori, Stig E. Barkou; Knudsen, Erik; Simonsen, Harald R.

Proceedings of Optical Fiber Communication Conference and Exhibit, 2001 — 2001, Volume 2, pp. TuC1-1-TuC1-3 vol.2

Photonic crystal fibers having a microstructured air-silica cross section offer new optical properties compared to conventional fibers for telecommunication, sensor, and other applications. Recent advances within research and development of these fibers are presented.

Year: 2001

Language: English

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3 Conference paper

Photonic crystal fibers: Technologies and applications

Year: 2004

Language: English

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4 Conference paper

Photonic crystal fibers: fundamentals to emerging applications

Bjarklev, Anders Overgaard

Conference on Lasers and Electro-optics, 2005. (cleo) — 2005, Volume 1, pp. 213 Vol. 1

A review of the fundamental properties of photonic crystal fibers is presented. Special focus is held on the emerging fields of application within areas such as actively controlled fiber devices and high-power fiber lasers.

Year: 2005

Language: English

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5 Conference paper

Properties of nonlinear photonic crystal fibers for telecommunication applications

Hansen, K.; Folkenberg, J.; Petersson, A.; Bjarklev, A.

Ofc 2003 Optical Fiber Communications Conference, 2003 — 2003, pp. 694-696 vol.2

We report on a range of novel properties of the new generation of highly nonlinear photonic crystal fibers with zero dispersion near 1.55 /spl mu/m. Aspects of loss mechanisms, dispersion properties and birefringence tailoring are described.

Year: 2003

Language: English

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6 Conference paper

Applications of photonic crystal fibers in optical communications - What is in the future?

Bjarklev, Anders Overgaard; Lin, Chinlon

18th Annual Meeting of the Ieee Lasers and Electro-optics Society, 2005. Leos 2005 — 2005, pp. 812-813

Superior control of guiding properties in photonic-crystal fibers led to several interesting applications in optical communications ranging from nonlinear optical signal processing to high-power fiber amplifiers. This paper will review recent developments and discuss the future possibilities.

Year: 2005

Language: English

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7 Conference paper

Photonic crystal fibers: fundamental properties and applications within sensors

Jensen, Jesper Bo Damm; Riishede, Jesper; Broeng, Jes; Lægsgaard, Jesper; Alkeskjold, Thomas Tanggaard; Sørensen, Niels Thorkild; et al. (4 more)

Ieee Sensors — 2003, Volume 1, pp. 269,270,271,272,273,274,275,276,277,278

Since the first experimental demonstration of a photonic crystal fiber (PCF) in 1996 by Knight et al. the optical properties and the fabrication of such fibers have attracted significant attention. The fiber structure with a lattice of air holes running along the length of the fiber provides

Year: 2003

Language: English

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8 Conference paper

High dno/dT liquid crystals and their applications in a thermally tunable liquid crystal photonic crystal fiber

Year: 2005

Language: English

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9 Journal article

High dno/dT liquid crystals and their applications in a thermally tunable liquid crystal photonic crystal fiber

crystal mixtures, designated as UCF-1 and UCF-2. The dn(o)/dT of UCF-1 is similar to 4x higher than that of 5CB at room temperature. By infiltrating UCF-1 into the air holes of a three-rod core photonic crystal fiber, we demonstrate a thermally tunable photonic bandgap fiber with tuning sensitivity of 27

Year: 2006

Language: English

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10 Journal article

Wavelength-tunable dispersion-imbalanced loop mirror based on dispersion-flattened high-nonlinearity photonic crystal fiber and its application in suppression of the incoherent interferometric crosstalk

Wavelength-tunable nonlinear suppression of incoherent interferometric crosstalk has been experimentally demonstrated using the dispersion-imbalanced loop mirror based on a 64-m-long dispersion-flattened high-nonlinearity photonic crystal fiber. The signal quality improvement is achieved over

Year: 2005

Language: English

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