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Low energy atmospheric muon neutrinos in MACRO

Authors :
I. De Mitri
C. R. Bower
L. Patrizii
C. De Marzo
F. Cei
S. Cecchini
J. A. Musser
F. Maaroufi
C. Favuzzi
Paolo Lipari
A. Di Credico
Np Longley
C. E. Lane
J. Derkaoui
V. Popa
S. Kyriazopoulou
D. Bakari
P. Spinelli
M. Giorgini
Kael Hanson
Erik Katsavounidis
O. Erriquez
R. C. Webb
C. W. Peck
S. L. Mufson
M. Ouchrif
D. Martello
G. de Cataldo
Mario Sitta
C. Gustavino
E. Kearns
M. Brigida
Roberto Bellotti
J. L. Stone
G. Sirri
M. Carboni
Donato Nicolo
D. Campana
F. Loparco
P. Pistilli
C. Forti
C. Bloise
P. Serra
F. Cafagna
P. Fusco
G. Giacomelli
M. Calicchio
R. Pazzi
E. Iarocci
Halina Bilokon
Annarita Margiotta
Andrea Carlo Marini
S P Mikheyev
A. Surdo
Severino Angelo Maria Bussino
Maurizio Spurio
L. Satta
E. Vilela
D. G. Michael
Michael J. Longo
A. Marzari-Chiesa
L. R. Sulak
G. Battistoni
Marco Monteno
G. Giannini
G. Mandrioli
Lindsey Gray
M. Ambrosio
R. Nolty
M. Spinetti
Ioannis Katsavounidis
M. Grassi
M. N. Mazziotta
R. Steinberg
Kate Scholberg
R.M. Heinz
P. Bernardini
V. Chiarella
F. Guarino
N. Giglietto
Giuseppe Osteria
V. Bisi
P. Monacelli
Vincenzo Patera
S. Coutu
A. Sciubba
Hyun-Chul Kim
A. A. Grillo
C. Orth
A. Baldini
O. Palamara
B. C. Choudhary
V. Togo
C. W. Walter
A. Rainò
R. Antolini
S. Petrera
C. Bemporad
G. Mancarella
J. Reynoldson
Teresa Montaruli
Frederic Jean Ronga
L. Perrone
Barry C. Barish
H. Dekhissi
L. Miller
D. Levin
M. Vakili
G. C. Barbarino
Maximiliano Sioli
Eugenio Scapparone
M. De Vincenzi
C. Satriano
G. Auriemma
Gregory Tarle
Alec Habig
E. Lamanna
M., Ambrosio
R., Antolini
G., Auriemma
D., Bakari
A., Baldini
Barbarino, Giancarlo
B. C., Barish
G., Battistoni
R., Bellotti
C., Bemporad
P., Bernardini
H., Bilokon
V., Bisi
C., Bloise
C., Bower
M., Brigida
S., Bussino
F., Cafagna
M., Calicchio
D., Campana
M., Carboni
S., Cecchini
F., Cei
V., Chiarella
B. C., Choudhary
S., Coutu
G., De Cataldo
H., Dekhissi
C., De Marzo
I., De Mitri
J., Derkaoui
M., De Vincenzi
A., Di Credico
O., Erriquez
C., Favuzzi
C., Forti
P., Fusco
G., Giacomelli
G., Giannini
N., Giglietto
M., Giorgini
M., Grassi
L., Gray
A., Grillo
Guarino, Fausto
C., Gustavino
A., Habig
K., Hanson
R., Heinz
E., Iarocci
E., Katsavounidi
I., Katsavounidi
E., Kearn
H., Kim
S., Kyriazopoulou
E., Lamanna
C., Lane
D. S., Levin
P., Lipari
N. P., Longley
M. J., Longo
F., Loparco
F., Maaroufi
G., Mancarella
G., Mandrioli
A., Margiotta
A., Marini
D., Martello
A., Marzari Chiesa
M. N., Mazziotta
D. G., Michael
S., Mikheyev
L., Miller
P., Monacelli
T., Montaruli
M., Monteno
S., Mufson
J., Musser
D., Nicolò
R., Nolty
C., Orth
G., Osteria
M., Ouchrif
O., Palamara
V., Patera
L., Patrizii
R., Pazzi
C. W., Peck
L., Perrone
S., Petrera
P., Pistilli
V., Popa
A., Rainò
J., Reynoldson
F., Ronga
C., Satriano
L., Satta
E., Scapparone
K., Scholberg
A., Sciubba
P., Serra
M., Sioli
G., Sirri
M., Sitta
P., Spinelli
M., Spinetti
M., Spurio
R., Steinberg
J. L., Stone
L. R., Sulak
A., Surdo
G., Tarlè
V., Togo
M., Vakili
E., Vilela
C. W., Walter
R., Webb
Ambrosio M.
Antolini R.
Auriemma G.
Bakari D.
Baldini A.
Barbarino G.C.
Barish B.C.
Battistoni G.
Bellotti R.
Bemporad C.
Bernardini P.
Bilokon H.
Bisi V.
Bloise C.
Bower C.
Brigida M.
Bussino S.
Cafagna F.
Calicchio M.
Campana D.
Carboni M.
Cecchini S.
Cei F.
Chiarella V.
Choudhary B.C.
Coutu S.
De Cataldo G.
Dekhissi H.
De Marzo C.
De Mitri I.
Derkaoui J.
De Vincenzi M.
Di Credico A.
Erriquez O.
Favuzzi C.
Forti C.
Fusco P.
Giacomelli G.
Giannini G.
Giglietto N.
Giorgini M.
Grassi M.
Gray L.
Grillo A.
Guarino F.
Gustavino C.
Habig A.
Hanson K.
Heinz R.
Iarocci E.
Katsavounidis E.
Katsavounidis I.
Kearns E.
Kim H.
Kyriazopoulou S.
Lamanna E.
Lane C.
Levin D.S.
Lipari P.
Longley N.P.
Longo M.J.
Loparco F.
Maaroufi F.
Mancarella G.
Mandrioli G.
Margiotta A.
Marini A.
Martello D.
Marzari-Chiesa A.
Mazziotta M.N.
Michael D.G.
Mikheyev S.
Miller L.
Monacelli P.
Montaruli T.
Monteno M.
Mufson S.
Musser J.
Nicolom D.
Nolty R.
Orth C.
Osteria G.
Ouchrif M.
Palamara O.
Patera V.
Patrizii L.
Pazzi R.
Peck C.W.
Perrone L.
Petrera S.
Pistilli P.
Popa V.
Rainoa A.
Reynoldson J.
Ronga F.
Satriano C.
Satta L.
Scapparone E.
Scholberg K.
Sciubba A.
Serra P.
Sioli M.
Sirri G.
Sitta M.
Spinelli P.
Spinetti M.
Spurio M.
Steinberg R.
Stone J.L.
Sulak L.R.
Surdo A.
Tarle G.
Togo V.
Vakili M.
Vilela E.
Walter C.W.
Webb R.
Bernardini, Paolo
Martello, Daniele
DE MITRI, Ivan
Perrone, Lorenzo
Macro, Collaboration
Ambrosio, M
Antolini, R
Auriemma, G
Bakari, D
Baldini, A
Barbarino, Gc
Barish, Bc
Battistoni, G
Bellotti, R
Bemporad, C
Bernardini, P
Bilokon, H
Bisi, V
Bloise, C
Bower, C
Brigida, M
Bussino, Severino Angelo Maria
Cafagna, F
Calicchio, M
Campana, D
Carboni, M
Cecchini, S
Cei, F
Chiarella, V
Choudhary, Bc
Coutu, S
De Cataldo, G
Dekhissi, H
De Marzo, C
De Mitri, I
Derkaoui, J
De Vincenzi, M
Di Credico, A
Erriquez, O
Favuzzi, C
Forti, C
Fusco, P
Giacomelli, G
Giannini, G
Giglietto, N
Giorgini, M
Grassi, M
Gray, L
Grillo, A
Guarino, F
Gustavino, C
Habig, A
Hanson, K
Heinz, R
Iarocci, E
Katsavounidis, E
Katsavounidis, I
Kearns, E
Kim, H
Kyriazopoulou, S
Lamanna, E
Lane, C
Levin, D
Lipari, P
Longley, Np
Longo, Mj
Loparco, F
Maaroufi, F
Mancarella, G
Mandrioli, G
Margiotta, A
Marini, A
Martello, D
Marzari Chiesa, A
Mazziotta, Mn
Michael, Dg
Mikheyev, S
Miller, L
Monacelli, P
Montaruli, T
Monteno, M
Mufson, S
Musser, J
Nicolo, D
Nolty, R
Orth, C
Osteria, G
Ouchrif, M
Palamara, O
Patera, V
Patrizii, L
Pazzi, R
Peck, Cw
Perrone, L
Petrera, S
Pistilli, P
Popa, V
Raino, A
Reynoldson, J
Ronga, F
Satriano, C
Satta, L
Scapparone, E
Scholberg, K
Sciubba, A
Serra, P
Sioli, M
Sirri, G
Sitta, M
Spinelli, P
Spinetti, M
Spurio, M
Steinberg, R
Stone, Jl
Sulak, Lr
Surdo, A
Tarle, G
Togo, V
Vakili, M
Vilela, E
Walter, Cw
Webb, R.
Publication Year :
2000
Publisher :
arXiv, 2000.

Abstract

We present the measurement of two event samples induced by atmospheric $\nu_\mu$ of average energy $ \bar {E}_\nu \sim 4 GeV$. In the first sample, the neutrino interacts inside the MACRO detector producing an upward-going muon leaving the apparatus. The ratio of the number of observed to expected events is $ 0.57 \pm0.05_{stat} \pm0.06_{syst} \pm0.14_{theor}$ with an angular distribution similar to that expected from the Bartol atmospheric neutrino flux. The second is a mixed sample of internally produced downward-going muons and externally produced upward-going muons stopping inside the detector. These two subsamples are selected by topological criteria; the lack of timing information makes it impossible to distinguish stopping from downgoing muons. The ratio of the number of observed to expected events is $0.71 \pm 0.05_{stat} \pm0.07_{syst} \pm0.18_{theor}$ . Using the ratio of the two subsamples (for which most theoretical uncertainties cancel) we can test the pathlength dependence of the oscillation hypothesis. The probability of agreement with the no-oscillation hypothesis is 5% . The deviations of our observations from the expectations has a preferred interpretation in terms of $\nu_\mu$ oscillations with maximal mixing and $\Delta m^2 \sim 10^{-3} \div 10^{-2} eV^2$. These parameters are in agreement with our results from upward throughgoing muons, induced by $\nu_\mu$ of much higher energies.<br />Comment: 7 pages, 6 figures. Submitted to Phys. Lett. B

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....99d7f407854fbcfae7ca5c91d8b7f703
Full Text :
https://doi.org/10.48550/arxiv.hep-ex/0001044