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Dive into the research topics where M. Thomson is active.

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Featured researches published by M. Thomson.


Nuclear Physics | 1992

Stringent cosmological bounds on inert neutrino mixing

Kari Enqvist; Kimmo Kainulainen; M. Thomson

We study neutrino oscillations in the early universe induced by a non-trivial vacuum mixing between an inert SU(2)×U(1) singlet and a weakly interacting doublet neutrino. Excluded regions in the (sin2 2θ0 − δm2) plane are determined carefully for mixing involving νe, νγ and ντ neutrinos with an inert partner. The bounds are much more stringent than those obtained from earthbound experiments. Much of the large-angle MSW-solution parameter range is excluded and severe constraints are placed on the proposed 17 keV netrino.


Journal of High Energy Physics | 2013

Physics performance for scalar electron, scalar muon and scalar neutrino searches at

M. Battaglia; J.J. Blaising; J. Marshall; S. Poss; A. Sailer; M. Thomson; E. van der Kraaij

A bstractThe determination of scalar lepton and gaugino masses is an important part of the programme of spectroscopic studies of Supersymmetry at a high energy e+e− linear collider. In this article we present results of a study of the processes: e+e− →


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2013

\sqrt{s} =

J. S. Marshall; A. Münnich; M. Thomson

\widetilde{e}_R^{+}\widetilde{e}_R^{-}


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1996

3 TeV and 1.4 TeV at CLIC

W. W. M. Allison; G. J. Alner; I. Ambats; D. S. Ayres; L. J. Balka; G. Barr; W. L. Barrett; Douglas Benjamin; C. Bode; P. M. Border; C.B. Brooks; J. H. Cobb; D. J. A. Cockerill; K. Coover; R. Cotton; H. Courant; B. Dahlin; U. DasGupta; J. Dawson; D. M. Demuth; V.W. Edwards; B. Ewen; T. Fields; C. Garcia-Garcia; H.M. Gallagher; R.H. Giles; G.L. Giller; M. C. Goodman; R.N. Gray; S. Heppelmann

→ e+e−


arXiv: Instrumentation and Detectors | 2007

Performance of Particle Flow Calorimetry at CLIC

M. Thomson

\widetilde{\chi}_1^0\widetilde{\chi}_1^0


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2008

The SOUDAN 2 detector: The design and construction of the tracking calorimeter modules

M. Slater; C. Adolphsen; R. Arnold; S. Boogert; G. Boorman; F. Gournaris; M. Hildreth; C. Hlaing; F. Jackson; O. Khainovski; Yu. G. Kolomensky; Alexey Lyapin; B. Maiheu; D. McCormick; D. J. Miller; Toyoko Orimoto; Z. Szalata; M. Thomson; David Ward; M. Wing; M. Woods

, e+e− →


ieee nuclear science symposium | 2003

Particle Flow Calorimetry at the ILC

A. Belias; G. Crone; E.F. Harris; C. Howcroft; S. Madani; T. C. Nicholls; G. F. Pearce; D. Reyna; N. Tagg; M. Thomson

\widetilde{\mu}_R^{+}\widetilde{\mu}_R^{-}


ieee particle accelerator conference | 2005

Cavity BPM system tests for the ILC energy spectrometer

M. Woods; Roger Erickson; J. Frisch; C. Hast; R.K. Jobe; L. Keller; T. Markiewicz; T. Maruyama; D. McCormick; J. Nelson; Nan Phinney; T. Raubenheimer; Marc Ross; Andrei Seryi; S.R. Smith; Z. Szalata; P. Tenenbaum; M. Woodley; D. Angal-Kalinin; C. Beard; C. Densham; J. Greenhalgh; F. Jackson; A. Kalinin; F. Zimmermann; Igor Zagorodnov; Y. Sugimoto; S. Walston; J. Smith; A. Sopczak

→ μ+μ−


Journal of Physics G | 1998

The MINOS data acquisition system

A Ballestrero; David G. Charlton; G Cowan; P Dornan; R. Edgecock; John Ellis; E.W.N. Glover; C Hawkes; H Hwang; R. W. L. Jones; V. Kartvelishvili; Zoltan Kunszt; E. Maina; David Miller; Stefano Moretti; A Moutoussi; C Parkes; P B Renton; D A Ross; W.J. Stirling; J C Thompson; M. Thomson; D R Ward; C. P. Ward; J Ward; M F Watson; N. K. Watson; Bryan R. Webber

\widetilde{\chi}_1^0\widetilde{\chi}_1^0


Physics Letters B | 1991

A Test Facility for the International Linear Collider, at SLAC End Station a for Prototypes of Beam Delivery and IR Components

M. Thomson; J. H. Cobb; W. W. M. Allison; G. J. Alner; I. Ambats; D. S. Ayres; L. J. Balka; G. Barr; W. L. Barrett; Douglas Benjamin; P. M. Border; C.B. Brooks; D. J. A. Cockerill; H. Courant; J. Dawson; V.W. Edwards; B. Ewen; T. Fields; C. Garcia-Garcia; R.H. Giles; G.L. Giller; M. C. Goodman; R.N. Gray; S. Heppelmann; N. Hill; J.H. Hoftiezer; D.J. Jankowski; K. Johns; T. Joyce; T. Kafka

, e+e− →

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D. S. Ayres

Argonne National Laboratory

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H. Courant

University of Minnesota

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M. C. Goodman

Argonne National Laboratory

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P. M. Border

University of Minnesota

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T. Fields

Argonne National Laboratory

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L. J. Balka

Argonne National Laboratory

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D. J. A. Cockerill

Rutherford Appleton Laboratory

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G. J. Alner

Rutherford Appleton Laboratory

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