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Abstract: (IOP)
After Jenni Adams and Stephen Parke organized a very successful Weak Interactions and Neutrino (WIN) meeting at the University of Canterbury near Christchurch, New Zealand in 2002, the idea emerged to organize Neutrino 08 in the same location. Christchurch also happens to be the gateway to Antarctica for the IceCube experiment. This idea was immediately supported by the late George Marx, the spiritual father of these conferences, and by Jack Schneps, whose advice made the organization of the meeting an easier task. We wish to thank the members of the International Advisory Committee and the International Neutrino Commission for their guidance and support.Neutrino 08 coincided with the 100th anniversary of Rutherford's Nobel, an occasion revisited in a talk by Cecilia Jarlskog that is reproduced in this volume.We thank the speakers for their long trip South to attend this a valuable meeting. With few exceptions, these proceedings report their contributions. The talks for which no written version has been submitted can be found at the SLAC e-conf website.We gratefully acknowledge the support of IUPAP and the New Zealand Government through the Ministry of Research, Science and Technology's International Conference fund, as well as the University of Canterbury, the University of Wisconsin (lead institution for the IceCube project), and Fermilab. The Los Alamos National Laboratory contributed to these proceedings.Most importantly, we thank Merrin McAuley and Claire McConchie and their team at the University of Canterbury Conference Office, Kim Kreiger from the University of Wisconsin, and Jo Robinson and her staff at the Christchurch Convention Centre for their dedication to making our meeting a success.Jenni Adams, Francis Halzen and Stephen Parke
Note:
  • Journal of Physics Conference Series, v.136
  • conference: Christchurch 2008/05/25
  • neutrino: astrophysics
  • neutrino: solar
  • neutrino: nuclear physics
  • neutrino: atmosphere
  • neutrino: beam
  • neutrino: mass
  • double-beta decay
  • dark matter
  • neutrino: oscillation
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