Dilepton and trilepton production by antineutrinos and neutrinos in neon
Author(s) -
G. Gerbier,
Daniel Bertrand,
J. Guy,
P. Marage,
M. Aderholz,
N. Armenise,
J.H. Bartley,
J.P. Baton,
V. Brisson,
R. Belusević,
D. Brou,
F.W. Bullock,
M. Calicchio,
E. Clayton,
T. Coghen,
A. M. Cooper-Sarkar,
O. Erriquez,
P. J. Fitch,
P. O. Hulth,
G. T. Jones,
P. Kasper,
H. Klein,
C. Kochowski,
M. Lagraa,
S. Leighton-Davis,
R. P. Middleton,
D.B. Miller,
M. M. Mobayyen,
D.R.O. Morrison,
M. Neveu,
S. Nuzzo,
S.W. OʼNeale,
M. A. Parker,
P. Petiau,
J. Sacton,
R.A. Sansum,
N. Schmitz,
E. Simopoulou,
M. Talebzadeh,
K. E. Varvell,
C. Vallée,
A. Vayaki,
W. Vénus,
H. Wachsmuth,
James D. Wells,
W. Wittek,
E. Zevgolatakos
Publication year - 1985
Publication title -
zeitschrift für physik c
Language(s) - English
Resource type - Journals
eISSN - 1431-5858
pISSN - 0170-9739
DOI - 10.1007/bf01571374
Subject(s) - physics , neutrino , neon , bar (unit) , sign (mathematics) , charged current , nuclear physics , production (economics) , signal (programming language) , subtraction , particle physics , standard model (mathematical formulation) , sample (material) , atomic physics , materials science , computer science , thermodynamics , mathematical analysis , mathematics , arithmetic , gauge (firearms) , argon , meteorology , metallurgy , economics , macroeconomics , programming language
A sample of over 25,000 fully measured neutrino and antineutrino charged current interactions in BEBC includes 192 dilepton candidates. The prompt signal after subtraction of background is 41 ±7μ+e-, 35±7μ+μ- events from {Mathematical expression} interactions, and 32±7μ-μ+ events from ν interactions. There are 2 trileptons, μ-μ-e+ and μ-μ-μ+. Results are compared with other experimental data and with the standard model. Limits to prompt like sign μ+e+, μ+μ+ and μ-μ- signals are given and compared with other experiments and with theoretical calculations. © 1985 Springer-Verlag.47 auteursSCOPUS: ar.jinfo:eu-repo/semantics/publishe
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom