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SolarB8and hep Neutrino Measurements from 1258 Days of Super-Kamiokande Data

Authors :
Y. Watanabe
J. Hill
M. Morii
T. Toshito
Minoru Yoshida
Y. Nagashima
J. A. Goodman
Y. Oyama
S. Tasaka
W. E. Keig
Y. Hayato
C. W. Walter
Atsumu Suzuki
Yusuke Koshio
B. Lee
K. Kaneyuki
Magdalena Malek
Soo-Bong Kim
M. B. Smy
Y. Fukuda
E. Kearns
Yoshitaka Itow
K. Nishikawa
M. Takita
L. R. Price
J. Shirai
M. Koike
H. Takeuchi
A. Suzuki
B. Viren
C. Saji
E. Sharkey
S. Dazeley
G. Guillian
S. Moriyama
M. Kohama
K. Ishihara
C. Mitsuda
C. McGrew
S. Matsuno
C. K. Jung
Tsuyoshi Nakaya
Heekyong Kim
H. Okazawa
D. Kielczewska
Yoshihiro Suzuki
C. Mauger
J. Yoo
Y. Totsuka
T. Ishii
M. Goldhaber
Kunio Inoue
Masato Shiozawa
Y. Takeuchi
R. J. Wilkes
T. Barszczak
U. Golebiewska
Alec Habig
M. Earl
D. W. Liu
R. Svoboda
J. Kameda
G. W. Sullivan
Takehisa Hasegawa
Masayuki Nakahata
Y. Gando
M. Ishitsuka
Hirokazu Ishino
Y. Hatakeyama
S. Mine
Shantanu Desai
Y. Ichikawa
A. L. Stachyra
K. Miyano
Takashi Kobayashi
W. R. Kropp
Tomoyuki Maruyama
R. W. Ellsworth
J. L. Stone
Henry W. Sobel
K. Nitta
H. Fujiyasu
E. Blaufuss
Kyoshi Nishijima
T. Inagaki
M. R. Vagins
Koji Nakamura
Masatoshi Koshiba
M. Miura
W. Gajewski
Kate Scholberg
A. Kibayashi
L. R. Sulak
T. Shibata
M. D. Messier
Makoto Sakuda
S. C. Boyd
T. Ishizuka
Y. Obayashi
K. Martens
John G. Learned
K. Kobayashi
Y. Kajiyama
Shoichi Yamada
Takaaki Kajita
M. Etoh
K. S. Ganezer
Todd Haines
D. Turcan
C. Yanagisawa
A. Okada
N. Sakurai
S. Nakayama
David William Casper
A. Sakai
D. Takemori
Source :
Physical Review Letters. 86:5651-5655
Publication Year :
2001
Publisher :
American Physical Society (APS), 2001.

Abstract

Solar neutrino measurements from 1258days of data from the Super-Kamiokande detector are presented. The measurements are based on recoil electrons in the energy range 5.0{endash}20.0MeV. The measured solar neutrino flux is 2.32{+-}0.03(stat){sup +0.08}{sub {minus}0.07}(syst){times}10{sup 6} cm{sup {minus}2}s{sup {minus}1} , which is 45.1{+-}0.5(stat ){sup +1.6}{sub {minus}1.4}(syst) % of that predicted by the BP2000 SSM. The day vs night flux asymmetry ({Phi}{sub n}{minus}{Phi}{sub d})/ {Phi}{sub average} is 0.033{+-}0.022(stat){sup +0.013}{sub {minus}0.012}(syst) . The recoil electron energy spectrum is consistent with no spectral distortion. For the hep neutrino flux, we set a 90% C.L.upper limit of 40{times}10{sup 3} cm{sup {minus}2}s{sup {minus}1} , which is 4.3times the BP2000 SSM prediction.

Details

ISSN :
10797114 and 00319007
Volume :
86
Database :
OpenAIRE
Journal :
Physical Review Letters
Accession number :
edsair.doi...........427dadb0256037093b0e6cc3374dc2d5
Full Text :
https://doi.org/10.1103/physrevlett.86.5651