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Dive into the research topics where George Hicks is active.

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Featured researches published by George Hicks.


Scientific Reports | 2017

Low-noise time-resolved optical sensing of electromagnetic pulses from petawatt laser-matter interactions

Timothy Robinson; F. Consoli; S. Giltrap; S. J. Eardley; George Hicks; E. J. Ditter; Oliver Ettlinger; N. H. Stuart; M. Notley; R. De Angelis; Z. Najmudin; R. A. Smith

We report on the development and deployment of an optical diagnostic for single-shot measurement of the electric-field components of electromagnetic pulses from high-intensity laser-matter interactions in a high-noise environment. The electro-optic Pockels effect in KDP crystals was used to measure transient electric fields using a geometry easily modifiable for magnetic field detection via Faraday rotation. Using dielectric sensors and an optical fibre-based readout ensures minimal field perturbations compared to conductive probes and greatly limits unwanted electrical pickup between probe and recording system. The device was tested at the Vulcan Petawatt facility with 1020 W cm−2 peak intensities, the first time such a diagnostic has been used in this regime. The probe crystals were located ~1.25 m from target and did not require direct view of the source plasma. The measured signals compare favourably with previously reported studies from Vulcan, in terms of the maximum measured intra-crystal field of 10.9 kV/m, signal duration and detected frequency content which was found to match the interaction chamber’s horizontal-plane fundamental harmonics of 76 and 101 MHz. Methods for improving the diagnostic for future use are also discussed in detail. Orthogonal optical probes offer a low-noise alternative for direct simultaneous measurement of each vector field component.


Physics of Plasmas | 2016

Magnetic field generation during intense laser channelling in underdense plasma

A. G. Smyth; Gianluca Sarri; M. Vranic; Y. Amano; D. Doria; E. Guillaume; H. Habara; R. Heathcote; George Hicks; Z. Najmudin; Hirotaka Nakamura; P. A. Norreys; S. Kar; L. O. Silva; K. A. Tanaka; Jorge Vieira; M. Borghesi

Channel formation during the propagation of a high-energy (120 J) and long duration (30 ps) laser pulse through an underdense deuterium plasma has been spatially and temporally resolved via means of a proton imaging technique, with intrinsic resolutions of a few μm and a few ps, respectively. Conclusive proof is provided that strong azimuthally symmetric magnetic fields with a strength of around 0.5 MG are created inside the channel, consistent with the generation of a collimated beam of relativistic electrons. The inferred electron beam characteristics may have implications for the cone-free fast-ignition scheme of inertial confinement fusion.


Journal of Instrumentation | 2016

Angularly resolved characterization of ion beams from laser-ultrathin foil interactions

C. Scullion; D. Doria; L. Romagnani; H. Ahmed; A. Alejo; O.C. Ettlinger; Robert Gray; James C. Green; George Hicks; D. Jung; K. Naughton; H. Padda; K. Poder; G. G. Scott; D. R. Symes; S. Kar; P. McKenna; Z. Najmudin; D. Neely; M. Zepf; M. Borghesi

Methods and techniques used to capture and analyze beam profiles produced from the interaction of intense, ultrashort laser pulses and ultrathin foil targets using stacks of Radiochromic Film (RCF) and Columbia Resin #39 (CR-39) are presented. The identification of structure in the beam is particularly important in this regime, as it may be indicative of the dominance of specific acceleration mechanisms. Additionally, RCF can be used to deconvolve proton spectra with coarse energy resolution while mantaining angular information across the whole beam.


High Power Laser Science and Engineering | 2014

Demonstration of laser pulse amplification by stimulated Brillouin scattering

E. Guillaume; K. Humphrey; Hirotaka Nakamura; R. Trines; R. Heathcote; M. Galimberti; Y. Amano; D. Doria; George Hicks; Edward Higson; S. Kar; Gianluca Sarri; M. Skramic; J. Swain; K. Tang; J. Weston; P. Zak; E.P. Alves; Ricardo Fonseca; F. Fiuza; H. Habara; K. A. Tanaka; R. Bingham; M. Borghesi; Z. Najmudin; L. O. Silva; P. A. Norreys


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2016

Ion acceleration and plasma jet formation in ultra-thin foils undergoing expansion and relativistic transparency

M. King; Robert Gray; Haydn Powell; D. A. MacLellan; Bruno Izquierdo; Luca C. Stockhausen; George Hicks; Nicholas Dover; Dean Rusby; D. C. Carroll; H. Padda; R. Torres; S. Kar; R. J. Clarke; I. O. Musgrave; Z. Najmudin; M. Borghesi; D. Neely; P. McKenna


Physics of Plasmas | 2016

Erratum: “Magnetic field generation during intense laser channelling in underdense plasma” [Phys. Plasmas 23, 063121 (2016)]

A. G. Smyth; Gianluca Sarri; Marija Vranic; Y. Amano; D. Doria; E. Guillaume; H. Habara; R. Heathcote; George Hicks; Z. Najmudin; Hirotaka Nakamura; P. A. Norreys; S. Kar; L. O. Silva; Kokichi Tanaka; Jorge Vieira; M. Borghesi


Bulletin of the American Physical Society | 2016

Density bunching effects in a laser-driven, near-critical density plasma for ion acceleration

Oliver Ettlinger; Aakash A. Sahai; George Hicks; Emma-Jane Ditter; Nicholas Dover; Yu-hsin Chen; Michael Helle; Daniel Gordon; A. Ting; Mikhail N. Polyanskiy; Igor Pogorelsky; Marcus Babzien; Z. Najmudin


Bulletin of the American Physical Society | 2016

Proton acceleration using doped Argon plasma density gradient interacting with relativistic CO2-laser pulse

Aakash A. Sahai; Oliver Ettlinger; George Hicks; Emma-Jane Ditter; Z. Najmudin


Bulletin of the American Physical Society | 2016

Optically Levitated Targets as a Source for High Brightness X-rays and a Platform for Mass-Limited Laser-interaction Experiments

Samuel Giltrap; Nick Stuart; Timothy Robinson; Christopher Armstrong; George Hicks; Sam Eardley; Ed Gumbrell; R. A. Smith


Bulletin of the American Physical Society | 2015

Proton acceleration enhanced by a plasma jet in expanding foils undergoing relativistic transparency

Robert Gray; M. King; Haydn Powell; D. A. MacLellan; Bruno Gonzalez-Izquierdo; Luca C. Stockhausen; George Hicks; Nicholas Dover; Dean Rusby; David L. Carroll; H. Padda; Ricardo Torres; S. Kar; Robert J. Clarke; D. Neely; Z. Najmudin; M. Borghesi; P. McKenna

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Z. Najmudin

Imperial College London

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M. Borghesi

Queen's University Belfast

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S. Kar

Queen's University Belfast

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D. Doria

Queen's University Belfast

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D. Neely

Rutherford Appleton Laboratory

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P. McKenna

University of Strathclyde

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D. A. MacLellan

University of Strathclyde

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Gianluca Sarri

Queen's University Belfast

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H. Padda

University of Strathclyde

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