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pro vyhledávání: '"D. van Petten"'
Autor:
Timothy Chupp, S. Samiei, C. Hendrus, E. Frlež, D. van Petten, P. E. Mueller, K. P. Rykaczewski, J. Wexler, N. Macsai, B. A. Zeck, W. Farrar, A. T. Bryant, Leah Broussard, T. Bailey, Robert Grzywacz, R. Mammei, S. Balascuta, M. Doyle, T. Shelton, R. Picker, Christopher Crawford, Wenjiang Fan, Seppo Penttila, C. Hayes, E. Smith, M. McCrea, W. S. Wilburn, K. Bass, D. Borissenko, J. Pierce, G. Randall, Juliette Mammei, Ricardo Alarcon, R. Whitehead, A. Smith, K. Chang, Sky Sjue, Michael Gericke, C. D. McLaughlin, G. Riley, P. L. McGaughey, J. D. Bowman, J. Caylor, Mark Makela, Vladimir Gudkov, Nadia Fomin, E. M. Scott, A. Salas-Bacci, M. Martinez, J. Byrne, T. V. Cianciolo, J. Fry, J.R. Calarco, L. Barrón Palos, Dinko Pocanic, F. Glück, D. E. Perryman, Geoffrey Greene, A. P. Jezghani, M. Gervais, A. Blose, D.G. Matthews, Y. Qian, Hui Li, N. Birge, Eric Stevens, X. Ding, Takeyasu M. Ito, J. Ramsey, J. Hamblen, Albert Young, S. Baeßler
Publikováno v:
INSPIRE-HEP
EPJ Web of Conferences, Vol 219, p 04002 (2019)
EPJ Web of Conferences, Vol 219, p 04002 (2019)
Neutron beta decay is one of the most fundamental processes in nuclear physics and provides sensitive means to uncover the details of the weak interaction. Neutron beta decay can evaluate the ratio of axial-vector to vector coupling constants in the