finsler geometry, hypercomplex numbers and physics
Русский
HOME | ABOUT | JOURNAL | ARTICLES | POLYNUMBERS | ALL SECTIONS | DISCUSSION | LOGIN
SECTIONS
Discussion
Temporary
nice
News
All articles
Journal
Polynumbers
Archive
Books
Finsler Prize
Prizes & Competitions
Institute
Moscow, FERT-2019
Moscow, FERT-2018
Murom, FERT-2017
Murom, FERT-2016
Murom, FERT-2015
Brasov FERT-2014
Debrecen FERT-2013
Roger Penrose - 2013
Moscow, FERT-2012
Braşov FERT-2011
Moscow FERT-2010
Moscow FERT-2009
Cairo FERT-2008
Moscow FERT-2007
Cairo FERT-2006
FinslerSchool "Wood Lake"
Conferences
Seminars
Films
Presentations
Foto
Pyramides
Software
Drafts
SEARCH
Journal
Prizes & Competitions

ON POSSIBLE DEPARTURE DETECTED VELOCITY OF PROPAGATION OF FUNDAMENTAL INTERACTIONS FROM LIGHT VELOCITY IN VACUUM
2011jmw | Gladyshev V.O.  // Bauman Moscow State Technical University, Moscow, Russia; Research Institute of Hypercomplex Systems in Geometry and Physics, Friazino, Russia, vgladyshev@mail.ru

It was shown that for the fundamental interactions, which propagate in a space of independent variables, results of measuring procedure, based on measurements of partial differentials of transformations, depend on laboratory inertial frame velocity relative to a space of propagation of interactions. Possible interpretation for invariance violation on the detector OPERA and in the experiment on measuring the time of a neutrino splash from SN1987A with neutrino and gravitational detectors was given. The estimation method of space anisotropy was offered. It is based on measurement of signal variations when the laboratory set changes its orientation in a space. It was pointed out that the main effective method of determining the anisotropy parameter is the experiment SADE suggested in the works [1, 2]. In the experiment space anisotropy was estimated on results of interference detection for velocity of electromagnetic radiation propagation in a rotating optical disk.


English: Russian:
hngp15_10.pdf, 146,978 Kb, PDF