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James Taylor

Researcher at Newcastle University

Publications -  1190
Citations -  43346

James Taylor is an academic researcher from Newcastle University. The author has contributed to research in topics: Laser & Fiber laser. The author has an hindex of 95, co-authored 1161 publications receiving 39945 citations. Previous affiliations of James Taylor include Institut national de la recherche agronomique & European Spallation Source.

Papers
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Proceedings ArticleDOI

Multi-watt average power 388 nm UV generation through frequency quadrupling of Yb/Er fiber laser sources

TL;DR: In this article, the frequency quadrupling of up to 50 W average, 1.5 kW peak power Yb/Er singlemode, fiber oscillator/amplifier sources sequentially in periodically poled and bulk LBO crystals allows to achieve UV average powers of 3-10 W around 388 nm.
Posted ContentDOI

Probabilistic Forecasting of Patient Waiting Times in an Emergency Department

TL;DR: This work studies the estimation of the probability distribution of individual patient waiting times in an emergency department (ED) and allows for dynamic updating and refinement of waiting time estimates as patient- and ED-specific information is revealed during the waiting process.
Proceedings ArticleDOI

A novel optical pulse compressor with use of a comb-like dispersion profiled fiber

TL;DR: In this article, the authors proposed a very attractive pulse source for high bit-rate communications systems using Electroabsorption modulators (EAMs) for high-bit-rate communication systems.
Proceedings ArticleDOI

Low-noise microwave signals from a frequency-stabilized Yb:Tungstate optical frequency comb

TL;DR: In this article, an alternative approach employing a 180-MHz repetition rate, diode-pumped Yb-doped tungstate (Yb:KYW) frequency comb is demonstrated.
Book ChapterDOI

Fibre Based Supercontinuum

TL;DR: Alfano and Shapiro as discussed by the authors have published three defining papers on supercontinuum generation in bulk materials, identifying some of the principal nonlinear effects contributing to the observed spectral broadening, as well as recognising the importance of the source in transient absorption measurements, and publishing on the application to picosecond Raman absorption.