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Featured researches published by W. Beaumont.


Journal of Instrumentation | 2017

A novel segmented-scintillator antineutrino detector

Y. Abreu; Y. Amhis; L. Arnold; G. Ban; W. Beaumont; M. Bongrand; D. Boursette; J. M. Buhour; B. C. Castle; K. Clark; B. Coupé; A. S. Cucoanes; David Cussans; A. De Roeck; J. D'Hondt; D. Durand; M. Fallot; S. Fresneau; L. Ghys; L. Giot; B. Guillon; G. Guilloux; S. Ihantola; X. Janssen; S. Kalcheva; L. N. Kalousis; E. Koonen; M. Labare; G. Lehaut; J. Mermans

The next generation of very-short-baseline reactor experiments will require compact detectors operating at surface level and close to a nuclear reactor. This paper presents a new detector concept based on a composite solid scintillator technology. The detector target uses cubes of polyvinyltoluene interleaved with 6LiF:ZnS(Ag) phosphor screens to detect the products of the inverse beta decay reaction. A multi-tonne detector system built from these individual cells can provide precise localisation of scintillation signals, making efficient use of the detector volume. Monte Carlo simulations indicate that a neutron capture efficiency of over 70 % is achievable with a sufficient number of 6LiF:ZnS(Ag) screens per cube and that an appropriate segmentation enables a measurement of the positron energy which is not limited by γ-ray leakage. First measurements of a single cell indicate that a very good neutron-gamma discrimination and high neutron detection efficiency can be obtained with adequate triggering techniques. The light yield from positron signals has been measured, showing that an energy resolution of 14%/√E(MeV) is achievable with high uniformity. A preliminary neutrino signal analysis has been developed, using selection criteria for pulse shape, energy, time structure and energy spatial distribution and showing that an antineutrino efficiency of 40% can be achieved. It also shows that the fine segmentation of the detector can be used to significantly decrease both correlated and accidental backgrounds.


Journal of Instrumentation | 2017

The SoLid anti-neutrino detector's readout system

L. Arnold; W. Beaumont; D. Cussans; Dave M Newbold; N. C. Ryder; A. Weber

The SoLid collaboration have developed an intelligent readout system to reduce their 3200 silicon photomultiplier detectors data rate by a factor of 10000 whilst maintaining high efficiency for storing data from anti-neutrino interactions. The system employs an FPGA-level waveform characterisation to trigger on neutron signals. Following a trigger, data from a space time region of interest around the neutron will be read out using the IPbus protocol. In these proceedings the design of the readout system is explained and results showing the performance of a prototype version of the system are presented.


Journal of Instrumentation | 2009

The FP420 R&D project: Higgs and New Physics with forward protons at the LHC

Michael Albrow; R. B. Appleby; M. Arneodo; G. Atoian; I. Azhgirey; Roger Barlow; I S Bayshev; W. Beaumont; L Bonnet; Andrew Brandt; Peter Bussey; Craig Buttar; J. M. Butterworth; M Carter; B. E. Cox; D Dattola; C. Da Via; J. de Favereau; David D'Enterria; P. De Remigis; A. De Roeck; E. A. De Wolf; P Duarte; John Ellis; Benoît Florins; Jeffrey R. Forshaw; J. Freestone; K. Goulianos; J. Gronberg; M. Grothe


European Physical Journal C | 2010

Performance studies of a full-length prototype for the CASTOR forward calorimeter at the CMS experiment

Vladimir Andreev; X. Aslanoglou; A. Azman; M. N. Bakirci; S. Basegmez; W. Beaumont; J. Blocki; K. Borras; A. Campbell; Salim Cerci; D. d’Enterria; M. de Silva; I. Dumanoglu; S. Erturk; E. Eskut; Y. Ershov; P. Göttlicher; L. Gouskos; G. Onengut; Y. Gusev; H. Jung; I. Katkov; P. Katsas; L.A. Khein; F. Kisoglu; A. Knutsson; S. Kuleshov; A. Kuznetsov; M. Lebeau; T. McCauley


Archive | 2009

Commissioning the CMS Silicon Strip Tracker prior to Operations with Cosmic Ray Muons

W. Adam; T. Bergauer; M. Dragicevic; M. Friedl; R. Fr; J. Hrubec; Manfred Krammer; W. Waltenberger; E. Widl; W. Beaumont; L. Benucci; M. Cardaci; E. Delmeire; M. Hashemi; E. de Langhe; P. Van Mechelen; N. Van Remortel; E.A. de Wolf


Archive | 2008

Performance studies of the final prototype for the CASTOR forward calorimeter at the CMS experiment

X. Aslanoglou; W. Beaumont; H. Van Haevermaet; P. Van Mechelen


Archive | 1998

CMS forward-backward MSGC milestone

Othmane Bouhali; J. Stefanescu; F. Udo; W. Van Doninck; L. Van Lancker; C. Vander Velde; P. Vanlaer; V. Zhukov; K. Bernier; W. Beaumont; T. Beckers; J.De Troy; C. Van Dyck; I. Boulogne; V. Chorowicz; D. Contardo; R. Haroutunian; L. Mirabito; G. Smadja; S. Tissot; F. Drouhin; B. Schwaller; Y. Benhammou; Fabien Jeanneau; C. Fontaine; S. Barthe; J. P. Coffin; J. Croix; W. Geist; U. Goerlach


Journal of Instrumentation | 2018

Optimisation of the scintillation light collection and uniformity for the SoLid experiment

Y. Abreu; Y. Amhis; W. Beaumont; M. Bongrand; D. Boursette; B. C. Castle; K. Clark; B. Coupé; David Cussans; A. De Roeck; D. Durand; M. Fallot; L. Ghys; L. Giot; K. Graves; B. Guillon; D. Henaff; B. Hosseini; S. Ihantola; S. Jenzer; S. Kalcheva; L. N. Kalousis; M. Labare; G. Lehaut; S. Manley; L. Manzanillas; J. Mermans; I. Michiels; C. Moortgat; David M Newbold


Journal of Instrumentation | 2018

arXiv : Performance of a full scale prototype detector at the BR2 reactor for the SoLid experiment

Y. Abreu; L. Giot; V. Pestel; I. Piñera; J. Mermans; N. C. Ryder; D. Boursette; B. C. Castle; L. Arnold; L. Simard; G. Lehaut; E. Koonen; J. H. Rademacker; A. De Roeck; G. Pronost; B. Guillon; S. Kalcheva; X. Janssen; A. Weber; K. Clark; Y. Amhis; J. Park; J. D'Hondt; S. Van Dyck; I. Michiels; D. Ryckbosch; M. Labare; B. Coupé; K. Petridis; M. H. Schune


Archive | 2008

Production of quartz plates for CMS-CASTOR experiment

A. Adiguzel; X. Aslanoglou; A. Ayhan; W. Beaumont; P. Van Mechelen

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Y. Abreu

University of Antwerp

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D. Boursette

Université Paris-Saclay

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L. Giot

University of Nantes

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Y. Amhis

Université Paris-Saclay

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L. Arnold

University of Bristol

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K. Clark

University of Toronto

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