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Thomas D.P. Allsop

Researcher at Aston University

Publications -  112
Citations -  2093

Thomas D.P. Allsop is an academic researcher from Aston University. The author has contributed to research in topics: Optical fiber & Grating. The author has an hindex of 26, co-authored 110 publications receiving 1939 citations. Previous affiliations of Thomas D.P. Allsop include University of Plymouth & University of Hull.

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A high sensitivity refractometer based upon a long period grating Mach–Zehnder interferometer

TL;DR: In this paper, a low cost interrogation scheme for a refractometer based on an in-line fiber long period grating (LPG) Mach-Zehnder interferometer is demonstrated.
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High-temperature sensitivity of long-period gratings in B-Ge codoped fiber

TL;DR: In this paper, thermal properties of long-period fiber gratings (LPFGs) of various periods fabricated in the conventional B-Ge codoped fiber have been investigated and a total of 27.5nm spectral shift was achieved from only 10/spl deg/C change in temperature for an LPFG with 240-/spl mu/m period.
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Detection of organic aromatic compounds in paraffin by a long-period fiber grating optical sensor with optimized sensitivity

TL;DR: In this article, a long-period grating (LPG) sensor is used to detect small variations in the concentration of an organic aromatic compound (xylene) in a paraffin (heptane) solution.
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Long period grating in multicore optical fiber: an ultra-sensitive vector bending sensor for low curvatures

TL;DR: The finite element method (FEM) model was used to investigate the modal behavior in multicore Fiber and to predict the phase-matching curves of the long period grating inscribed into multicore fiber.
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Bending and orientational characteristics of long period gratings written in D-shaped optical fiber [directional bend sensors]

TL;DR: Long period gratings were written into a D-shaped single-mode fiber and blue and red wavelength shifts of the stopbands were observed as the sensor was rotated around a fixed axis for a given curvature; thus, in principle, this sensor could be used to obtain bending and orientational information.