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title:(Microstructured AND Optical AND Fibres)

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1 Preprint article

Microstructured optical fibres

A new class of optical fibre has emerged in recent years: the microstructured fibre [1]. These fibres guide light by means of an arrangement of air holes that run along the fibre, and some examples are shown in figure 1-1. Note that the hole-to-hole spacing is typically labelled A, and d is the hole diameter. In these fibres, light can be guided using either one of two quite different mechanisms. The first class of microstructured fibres is the index-guiding microstructured fibre. Such fibres are widely known as holey fibres (HFs). Holey fibres guide light due to the principle of modified t...

Year: 2002

Language: English

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2 Book chapter

Microstructured Optical Fibres

Monro, T.M.; Bjarklev, Anders Overgaard; Lægsgaard, Jesper

Handbook of Optoelectronics — 2006

Year: 2006

Language: English

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3 Journal article

Sensing with microstructured optical fibres

The optical and geometrical properties of microstructured optical fibres present new alternatives for a range of sensing applications. We present the design criteria for achieving significant overlap between the light guided in the fibre and the air holes and hence for producing efficient

Year: 2001

Language: English

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4 Preprint article

Sensing with microstructured optical fibres

The optical and geometrical properties of microstructured optical fibres present new alternatives for a range of sensing applications. We present the design criteria for achieving significant overlap between the light guided in the fibre and the air holes and hence for producing efficient

Year: 2001

Language: Undetermined

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5 Preprint article

Microstructured optical fibres: New opportunities for sensing

The novel properties possible in microstructured optical fibres present new alternatives for a range of sensing applications. We review applications such as gas sensing, ultra-broadband sources, new source wavelengths, rotational sensing and bend sensing.

Year: 2000

Language: English

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6 Preprint article

Modelling the optical properties of microstructured optical fibres

The presence of wavelength-scale holes in a microstructured optical fibres leads to challenges in the accurate modelling of their optical properties. A wide variety of techniques can be used, ranging from effective step-index fibre models to approaches that incorporate the full complexity

Year: 2002

Language: English

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7 Preprint article

New opportunities for sensing using microstructured optical fibres

Recently a new class of optical fibre has emerged: the microstructured fibre. One example is the holey fibre (HF), which has a cladding region defined by air holes (see Figure 1). Light is guided in a HF due to the effective refractive index contrast between the solid core and the holey cladding

Year: 2001

Language: English

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8 Journal article

Lead silicate microstructured optical fibres for electro-optical applications

We report progress towards the realization of optical modulators based on electro-optic effects in soft glass fibres. A hybrid fabrication procedure was developed for producing microstructured lead silicate glass fibres with internal electrodes. Electro-optical characterization confirms

Year: 2013

Language: English

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9 Preprint article

Leaky modes in microstructured optical fibres with annular sectors

Microstructured or holey optical fibres are a novel class of fibres that have attracted much interest recently because they can be tailored to have properties (dispersion, nonlinearity, mode size) very different from conventional fibres. These structures can consist exclusively of air holes arranged around a solid core region in a uniform background. Since such fibres do not have any raised index regions, they cannot support true bound modes. They can, however, possess leaky modes where the light is trapped within a region surrounded by air holes. Such modes suffer confinement losses due to...

Year: 2001

Language: English

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10 Journal article

Enhancement of fluorescence-based sensing using microstructured optical fibres

We develop a generic model of excitation and fluorescence recapturing within filled microstructured optical fibres (MOFs) with arbitrary structure and demonstrate that the light-matter overlap alone does not determine the optimal fibre choice. Fibre designs with sub-wavelength features

Year: 2007

Language: English

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