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New experimental limits on the Pauli-forbidden transitions inC12nuclei obtained with485days Borexino data

Authors :
G. Bellini
S. Bonetti
M. Buizza Avanzini
B. Caccianiga
D. D’Angelo
D. Franco
M. Giammarchi
P. Lombardi
L. Ludhova
E. Meroni
L. Miramonti
L. Perasso
G. Ranucci
A. Re
Y. Suvorov
J. Benziger
L. Cadonati
A. Pocar
F. Calaprice
A. Chavarria
F. Dalnoki-Veress
C. Galbiati
A. Goretti
Andrea Ianni
M. Leung
B. Loer
R. Saldanha
J. Xu
C. Carraro
S. Davini
E. Guardincerri
G. Manuzio
M. Pallavicini
S. Perasso
P. Risso
C. Salvo
G. Testera
S. Zavatarelli
H. de Kerret
D. Kryn
M. Obolensky
D. Vignaud
A. Derbin
V. Muratova
A. Etenko
E. Litvinovich
I. Machulin
A. Sabelnikov
M. Skorokhvatov
S. Sukhotin
K. Fomenko
O. Smirnov
A. Sotnikov
O. Zaimidoroga
S. Gazzana
C. Ghiano
Aldo Ianni
G. Korga
D. Montanari
A. Razeto
R. Tartaglia
M. Goeger-Neff
T. Lewke
Q. Meindl
L. Oberauer
F. von Feilitzsch
Y. Winter
M. Wurm
C. Grieb
S. Hardy
M. Joyce
S. Manecki
L. Papp
R. S. Raghavan
D. Rountree
R. B. Vogelaar
W. Maneschg
S. Schönert
H. Simgen
G. Zuzel
M. Misiaszek
M. Wojcik
F. Ortica
A. Romani
Source :
Physical Review C. 81
Publication Year :
2010
Publisher :
American Physical Society (APS), 2010.

Abstract

The Pauli exclusion principle (PEP) has been tested for nucleons ($n,p$) in $^{12}C$ with the Borexino detector.The approach consists of a search for $\gamma$, $n$, $p$ and $\beta^\pm$ emitted in a non-Paulian transition of 1$P_{3/2}$- shell nucleons to the filled 1$S_{1/2}$ shell in nuclei. Due to the extremely low background and the large mass (278 t) of the Borexino detector, the following most stringent up-to-date experimental bounds on PEP violating transitions of nucleons have been established: $\tau({^{12}\rm{C}}\to{^{12}\widetilde{\rm{C}}}+\gamma) \geq 5.0\cdot10^{31}$ y, $\tau({^{12}\rm{C}}\to{^{11}\widetilde{\rm{B}}}+ p) \geq 8.9\cdot10^{29}$ y, $\tau({^{12}\rm{C}}\to{^{11}\widetilde{\rm{C}}}+ n) \geq 3.4 \cdot 10^{30}$ y, $\tau({^{12}\rm{C}}\to{^{12}\widetilde{\rm{N}}}+ e^- + \widetilde{\nu_e}) \geq 3.1\cdot 10^{30}$ y and $\tau({^{12}\rm{C}}\to{^{12}\widetilde{\rm{B}}}+ e^+ + \nu_e) \geq 2.1 \cdot 10^{30}$ y, all at 90% C.L. The corresponding upper limits on the relative strengths for the searched non-Paulian electromagnetic, strong and weak transitions have been estimated: $\delta^2_{\gamma} \leq 2.2\cdot10^{-57}$, $\delta^2_{N} \leq 4.1\cdot10^{-60}$ and $\delta^2_{\beta} \leq 2.1\cdot10^{-35}$.

Details

ISSN :
1089490X and 05562813
Volume :
81
Database :
OpenAIRE
Journal :
Physical Review C
Accession number :
edsair.doi...........eeeb7451f1d68c10e25d3fb8fd6648ed