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Featured researches published by J. Allaby.


Physics Letters B | 1973

The energy dependence of the proton-proton total cross-section for centre-of-mass energies between 23 and 53 GeV

U. Amaldi; R. Biancastelli; C. Bosio; G. Matthiae; J. Allaby; W. Bartel; G. Cocconi; A.N. Diddens; R. Dobinson; A.M. Wetherell

Abstract Measurements of proton-proton elastic scattering at angles around 6 mrad have been made at centre-of-mass energies of 23, 31, 45 and 53 GeV using the CERN Intersecting Storage Rings. The absolute scale of the cross-section was established by determination of the effective density of the colliding beans in their overlap region. Proton-proton total cross sections were deduced by extrapolation of the elastic differential cross-section to the forward direction and by application of the optical theorem. The results indicate that over the energy range studied the proton-proton total cross-section increases from about 39 to about 43 mb.


Physics Letters B | 1969

Total cross sections of π+, K+ and p on protons and deuterons in the momentum range 15–60 GeV/c

S.P. Denisov; S.V. Donskov; Yu.P. Gorin; A.I. Petrukhin; Yu.D. Prokoshkin; D. A. Stoyanova; J. Allaby; G. Giacomelli

Abstract Total cross-section data are presented for protons, positive pions and positive kaons on protons and deuterons in the momentum range 15 GeV/ c to 60 GeV/ c in 5 GeV/ c steps.


Physics Letters B | 1973

Measurements of the proton--proton total cross section by means of Coulomb scattering at the CERN Intersecting Storage Rings.

U. Amaldi; R. Biancastelli; C. Bosio; G. Matthiae; J. Allaby; W. Bartel; M.M. Block; G. Cocconi; A.N. Diddens; R. Dobinson; J. Litt; A.M. Wetherell

Abstract Proton-proton elastic scattering has been measured at the CERN Intersecting Storage Rings in the four-momentum transfer range 0.001 ⩽… t …⩽ 0.015 GeV 2 at centre-of-mass energies of 23 and 31 GeV. The detection of Coulomb scattering and of its interference with nuclear scattering leads to the determination of the real part of the nuclear amplitude and of the total proton-proton cross section by the optical theorem.


Physics Letters B | 2004

Measurement of the atmospheric muon spectrum from 20 to 3000 GeV

P. Achard; O. Adriani; M. Aguilar-Benitez; J. Alcaraz; G. Alemanni; J. Allaby; A. Aloisio; M. G. Alviggi; F.L. Linde

The absolute muon flux between 20 GeV and 300 GeV is measured with the L3 magnetic muon spectrometer for zenith angles ranging from 0 degree to 58 degrees. Due to the large exposure of about 150 m2 sr d, and the excellent momentum resolution of the L3 muon chambers, a precision of 2.3% at 150 GeV in the vertical direction is achieved. The ratio of positive to negative muons is studied between 20 GeV and 500 GeV, and the average vertical muon charge ratio is found to be 1.285 +- 0.003 (stat.)+- 0.019 (syst.).


Physics Letters B | 1968

STRUCTURE IN THE ANGULAR DISTRIBUTION OF HIGH ENERGY PROTON--PROTON SCATTERING.

J. Allaby; Freddy Binon; A.N. Diddens; P. Duteil; A. Klovning; R. Meunier; Jean Pierre Peigneux; E.J. Sacharidis; K. Schlüpmann; M. Spighel; Jean-Pierre Stroot; A.M. Thorndike; A.M. Wetherell

Abstract Results are presented on measurements of elastic proton-proton scattering at 19.2 and 21.1 GeV/c in the angular region where previously structure had been observed at lower energies.


Physics Letters B | 1986

A precise determination of the electroweak mixing angle from semi-leptonic neutrino scattering

J. Allaby; U. Amaldi; G. Barbiellini; M. Baubillier; F. Bergsma; A. Capone; W. Flegel; F. Grancagnolo; L. Lanceri; M. Metcalf; C. Nieuwenhuis; R. Pain; J. Panman; R. Plunkett; K. Winter; I. Abt; J. Aspiazu; A. Bungener; F.W. Büsser; P. D. Gall; T. Hebbeker; F. Niebergall; P. Schütt; P. Stähelin; P. Gorbunov; E. Grigoriev; V. Khovansky; A. Rosanov; A. Baroncelli; L. Barone

Abstract The cross section ratio of neutral-current and charged-current semi-leptonic interactions of muon-neutrinos on isoscalar nuclei has been measured with the result: R v =0.3093±0.0031 for hadronic energy larger than 4 GeV. From this ratio, the electroweak mixing angle is determined to be sin 2 θ w =0.236+0.012( m c −1.5)±0.005 (exp.)±0.003 (theor.), where m c is the charm-quark mass in GeV/ c 2 .


Physics Letters B | 1986

A search for decays of heavy neutrinos in the mass range 0.5–2.8 GeV

F. Bergsma; L. Barone; C. Bosio; V. Valente; P. Monacelli; F. de Notaristefani; U. Amaldi; J. Allaby; P. Stähelin; E. Grigoriev; K. Winter; L. Lanceri; A. Baroncelli; M. Diemoz; P. Pistilli; I. Abt; M. Metcalf; L. Luminari; R. Santacesaria; P. Schütt; G. Barbiellini; V. Khovansky; H. Daumann; F. Niebergall; Alexandre Rozanov; L. Tortora; J. Panman; Christoph Berger; C. Santoni; W. Flegel

A search for decays of heavy neutrinos was conducted by the CHARM Collaboration in a prompt neutrino beam produced by dumping 400 GeV protons in a Cu target, and in the CERN wide-band neutrino beam produced by 400 GeV primary protons. No candidate event was found. In the beam-dump experiment heavy neutrinos have been assumed to be produced by mixing in charmed D meson decays. Neutrinos decaying into e+e−ve, μ+e−vμ, and μ+μ−vμ were searched for. Limits of |Uei|2, |Uμi|2 < 10−7 were obtained for neutrino masses around 1.5 GeV. In the wide-band experiment heavy neutrinos were assumed to be produced by neutral-current neutrino interactions in the CHARM calorimeter. Here a search was made for neutrinos decaying into a μ and hadrons. This experiment is sensitive to decays of neutrinos with mass in the range 0.5–2.8 GeV with limits of |Uμi|2 < 3 × 10−4 for masses around 2.5 GeV. These measurements extend our previous results in the mass range 10–400 MeV.


Nuclear Instruments and Methods | 1980

A detector for neutral-current interactions of high-energy neutrinod

A.N. Diddens; M. Jonker; J. Panman; F. Udo; J. Allaby; U. Amaldi; G. Barbiellini; A. Baroncelli; V. Blobel; G. Cocconi; W. Flegel; W. Kozanecki; Elson Longo; K. H. Mess; M. Metcalf; J. Meyer; R. S. Orr; F. Schneider; A.M. Wetherell; K. Winter; F.W. Büsser; P. D. Gall; H. Grote; P. Heine; B. Kröger; F. Niebergall; K. H. Ranitzsch; P. Stähelin; V. Gemanov; E. Grigoriev

Abstract The construction and performance of a large detector, designed principally to investigate neutral-current interactions of high-energy neutrinos, are described. The detector consists of an ionization calorimeter as a target to determine the energy and the direction of the shower produced by the neutrino scattering, and of a magnetic muon spectrometer. The calorimeter has also been used as a muon polarimeter.


Physics Letters B | 1971

Measurements of small angle proton-proton elastic scattering at the CERN intersecting storage rings

U. Amaldi; R. Biancastelli; C. Bosio; G. Matthiae; J. Allaby; W. Bartel; G. Cocconi; A.N. Diddens; R. Dobinson; V. Elings; J. Litt; L.S. Rochester; A.M. Wetherell

Abstract Proton-proton elastic scattering has been measured over the angular range 7 to 16 mrad at centre-of-mass energies of 31, 45 and 53 GeV using the CERN Intersecting Storage Rings. The results indicate that the diffraction peak has continued to shrink with increasing energy, but not as fast as suggested by the results at lower energies.


European Physical Journal C | 1987

A Precise Determination of the Electroweak Mixing Angle from Semileptonic Neutrino Scattering

J. Allaby; U. Amaldi; G. Barbiellini; M. Baubillier; F. Bergsma; A. Capone; W. Flegel; F. Grancagnolo; L. Lanceri; M. Metcalf; C. Nieuwenhuis; R. Pain; J. Panman; R. Plunckett; K. Winter; I. Abt; J. Aspiazu; A. Bungener; F.W. Büsser; P. D. Gall; T. Hebbeker; F. Niebergall; P. Schütt; P. Stähelin; P. Gorbunov; E. Grigoriev; V. Khovansky; A. Rosanov; A. Baroncelli; L. Barone

The cross-section ratio of neutral-current and charged-current semileptonic interactions of muon-neutrinos on isoscalar nuclei has been measured with the result:Rv=0.3093±0.0031 for hadronic energy larger than 4 GeV. From this ratio we determined the electroweak mixing angle sin2θW, wheremc is the charm-quark mass in GeV/c2. Comparison with direct measurements ofmw andmz determines the radiative shift of the intermediate boson mass Δr=0.077±0.025(exp.)±0.038(syst.), in agreement with the prediction. Assuming the validity of the electroweak standard theory we determined ϱ=0.990−0.013(mc−1.5)±0.009(exp.)±0.003(theor.).

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G. Alemanni

University of Lausanne

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A. Aloisio

University of Naples Federico II

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O. Adriani

University of Florence

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M. Aguilar-Benitez

Centre national de la recherche scientifique

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F.L. Linde

University of Amsterdam

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