P
Petr Vogel
Researcher at California Institute of Technology
Publications - 252
Citations - 66619
Petr Vogel is an academic researcher from California Institute of Technology. The author has contributed to research in topics: Neutrino & Neutrino oscillation. The author has an hindex of 69, co-authored 248 publications receiving 60280 citations. Previous affiliations of Petr Vogel include Aarhus University & University of Basel.
Papers
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Journal ArticleDOI
Statistical analysis of the time dependence of the solar neutrino capture rate
B. W. Filippone,Petr Vogel +1 more
TL;DR: In this article, a maximum likelihood technique is used to analyze the measured solar neutrino capture rate in order to test various hypotheses regarding its time dependence, and it is shown that a capture rate anticorrelated with sunspot numbers gives a better fit to the data than a constant capture rate.
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Scattering of neutralinos from niobium
TL;DR: In this paper, cross sections for the scattering of neutralino dark-matter candidates from 93Nb at all potentially relevant values of the momentum transfer q were calculated, and the results will aid the interpretation of data from niobium detectors.
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Shell model Monte Carlo method for two-neutrino double beta decay.
P.B. Radha,D. J. Dean,Steven E. Koonin,T. T. S. Kuo,Karlheinz Langanke,Alfredo Poves,J. Retamosa,Petr Vogel +7 more
TL;DR: Shell model Monte Carlo techniques are used to calculate two-neutrino double beta decay matrix elements and the method is applied to the decay of 76Ge in the (0f5/2,1p,0g9/2) model space using a newly calculated realistic interaction.
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Muonic cascade: General discussion and application to the third-row elements
TL;DR: In this paper, the experimental data on muonic x-ray intensities for the third-row atoms (Z=11-17) were analyzed in a unified way, and it was shown that the inner electron shells (K and L) are strongly perturbed during the muonic cascade.
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Double-beta decay of 48Ca revisited
TL;DR: In this article, the 48Ca → 48Ti two neutrino double-beta decay rate is calculated exactly in the full fp shell with the hamiltonian describing well the spectroscopy of the A = 48 system.