M. Kauer
University College London
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Featured researches published by M. Kauer.
European Physical Journal C | 2010
R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; M. Bongrand; V. Brudanin; A. J. Caffrey; S. Cebrián; A. Chapon; E. Chauveau; Th. Dafni; Frank F. Deppisch; J. Díaz; D. Durand; V. Egorov; J. J. Evans; R. Flack; K-I. Fushima; I. García Irastorza; X. Garrido; Haley Louise Gomez; B. Guillon; A. Holin; K. Holy; J.J. Horkley; Ph. Hubert; C. Hugon; F. J. Iguaz; N. Ishihara
The possibility to probe new physics scenarios of light Majorana neutrino exchange and right-handed currents at the planned next generation neutrinoless double β decay experiment SuperNEMO is discussed. Its ability to study different isotopes and track the outgoing electrons provides the means to discriminate different underlying mechanisms for the neutrinoless double β decay by measuring the decay half-life and the electron angular and energy distributions.
Physical Review C | 2009
J. Argyriades; R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; M. Bongrand; G. Broudin; V. Brudanin; A. J. Caffrey; E. Chauveau; Z. Daraktchieva; D. Durand; V. Egorov; N. Fatemi-Ghomi; R. L. Flack; Ph. Hubert; J. Jerie; S. Jullian; M. Kauer; S. King; A. Klimenko; O. Kochetov; S. I. Konovalov; V. Kovalenko; D. Lalanne; T. Lamhamdi; K. Lang; Y. Lemière; C. Longuemare
The half-life for double-{beta} decay of {sup 150}Nd has been measured by the NEMO-3 experiment at the Modane Underground Laboratory. Using 924.7 days of data recorded with 36.55 g of {sup 150}Nd, we measured the half-life for 2{nu}{beta}{beta} decay to be T{sub 1/2}{sup 2{nu}}=(9.11{sub -0.22}{sup +0.25}(stat.){+-}0.63(syst.))x10{sup 18} yr. The observed limit on the half-life for neutrinoless double-{beta} decay is found to be T{sub 1/2}{sup 0{nu}}>1.8x10{sup 22} yr at 90% confidence level. This translates into a limit on the effective Majorana neutrino mass of <4.0-6.3 eV if the nuclear deformation is taken into account. We also set limits on models involving Majoron emission, right-handed currents, and transitions to excited states.
Physical Review Letters | 2011
R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; S. Blondel; M. Bongrand; G. Broudin-Bay; V. Brudanin; A. J. Caffrey; A. Chapon; E. Chauveau; D. Durand; V. Egorov; R. Flack; X. Garrido; J. Grozier; B. Guillon; Ph. Hubert; C. M. Jackson; S. Jullian; M. Kauer; A. Klimenko; O. Kochetov; S. I. Konovalov; V. Kovalenko; D. Lalanne; T. Lamhamdi; K. Lang; Z. Liptak
We report results from the NEMO-3 experiment based on an exposure of 1275 days with 661 g of (130)Te in the form of enriched and natural tellurium foils. The ββ decay rate of (130)Te is found to be greater than zero with a significance of 7.7 standard deviations and the half-life is measured to be T(½)(2ν) = [7.0 ± 0.9(stat) ± 1.1(syst)] × 10(20) yr. This represents the most precise measurement of this half-life yet published and the first real-time observation of this decay.
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2010
J. Argyriades; R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; M. Bongrand; C. Bourgeois; D. Breton; M. Briére; G. Broudin-Bay; V. Brudanin; A. J. Caffrey; S. Cebrián; A. Chapon; E. Chauveau; Th. Dafni; J. Díaz; D. Durand; V. Egorov; J. J. Evans; R. Flack; K-I. Fushima; I.G. Irastorza; X. Garrido; Haley Louise Gomez; B. Guillon; A. Holin; K. Holy; J. J. Horkey
The development of BiPo detectors is dedicated to the measurement of extremely high radiopurity in
Journal of Instrumentation | 2017
A. S. Barabash; A. Basharina-Freshville; E. Birdsall; S. Blondel; S. Blot; M. Bongrand; D. Boursette; V. Brudanin; J. Busto; A.J. Caffrey; S. Calvez; M. Cascella; S. Cebrián; C. Cerna; J. P. Cesar; E. Chauveau; A. Chopra; T. Dafni; S. De Capua; D. Duchesneau; D. Durand; V. Egorov; G. Eurin; J. J. Evans; L. Fajt; D. Filosofov; R. Flack; X. Garrido; H. Gómez; B. Guillon
^{208}
Applied Radiation and Isotopes | 2017
P. Loaiza; A. S. Barabash; A. Basharina-Freshville; E. Birdsall; S. Blondel; S. Blot; M. Bongrand; D. Boursette; V. Brudanin; J. Busto; A.J. Caffrey; S. Calvez; M. Cascella; C. Cerna; E. Chauveau; A. Chopra; S. De Capua; D. Duchesneau; D. Durand; V. Egorov; G. Eurin; J. J. Evans; L. Fajt; D. Filosofov; R. Flack; X. Garrido; H. Gómez; B. Guillon; P. Guzowski; K. Holý
Tl and
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2017
A. S. Barabash; A. Basharina-Freshville; S. Blot; M. Bongrand; Ch Bourgeois; D. Breton; V. Brudanin; H. Burešovà; J. Busto; A. J. Caffrey; S. Calvez; M. Cascella; C. Cerna; J. P. Cesar; E. Chauveau; A. Chopra; G. Claverie; S. De Capua; F. Delalee; D. Duchesneau; V. Egorov; G. Eurin; J. J. Evans; L. Fajt; D. Filosofov; R. Flack; X. Garrido; H. Gómez; B. Guillon; P. Guzowski
^{214}
Physical Review Letters | 2011
R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; S. Blondel; M. Bongrand; G. Broudin-Bay; Brudanin; A. J. Caffrey; A. Chapon; E. Chauveau; D. Durand; Egorov; R. L. Flack; X. Garrido; J. Grozier; B. Guillon; Ph. Hubert; C. Hugon; C. M. Jackson; S. Jullian; M. Kauer; A. Klimenko; O. Kochetov; S. I. Konovalov; Kovalenko; D. Lalanne; T. Lamhamdi; K. Lang
Bi for the SuperNEMO double beta decay source foils. A modular prototype, called BiPo-1, with 0.8
Physical Review Letters | 2011
R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; S. Blondel; M. Bongrand; G. Broudin-Bay; V. Brudanin; A. J. Caffrey; A. Chapon; E. Chauveau; D. Durand; V. Egorov; R. L. Flack; X. Garrido; J. Grozier; B. Guillon; Ph. Hubert; C. Hugon; C. M. Jackson; S. Jullian; M. Kauer; A. Klimenko; O. Kochetov; S. I. Konovalov; V. Kovalenko; D. Lalanne; T. Lamhamdi; K. Lang
m^2
Physical Review Letters | 2011
R. Arnold; C. Augier; J. Baker; A. S. Barabash; A. Basharina-Freshville; S. Blondel; M. Bongrand; G. Broudin-Bay; V. Brudanin; A. J. Caffrey; A. Chapon; E. Chauveau; D. Durand; V. Egorov; R. L. Flack; X. Garrido; J. Grozier; B. Guillon; Ph. Hubert; C. Hugon; C. M. Jackson; S. Jullian; M. Kauer; A. Klimenko; O. Kochetov; S. I. Konovalov; V. Kovalenko; D. Lalanne; T. Lamhamdi; K. Lang
of sensitive surface area, has been running in the Modane Underground Laboratory since February, 2008. The goal of BiPo-1 is to measure the different components of the background and in particular the surface radiopurity of the plastic scintillators that make up the detector. The first phase of data collection has been dedicated to the measurement of the radiopurity in