arXiv:0907.5390·v3·High Energy Physics — Phenomenology
The four-momentum conservation and equal velocity assumption in neutrino oscillations
Abstract
The neutrino masses and oscillation are closely related to how neutrino propagates. In this paper, we first derive a new form of four-momentum conservation that connects the four-momentum of the neutrino flavor eigenstate and the four momenta of its mass eigen-components. Then we use the assumption that the mass eigen-components travel at equal velocity to derive the energy-momentum square difference (EMSD) for the flavor eigenstate. It is shown that for the equal velocity assumption, will be a fixed constant in events with different and/or . In contrast, for the equal energy or equal momentum assumption, will vary with or respectively. These EMSD can be checked by ongoing and future neutrino experiments. The phase difference between two neutrino mass eigen-components and is then derived for the equal velocity assumption. For relativistic neutrinos, it is shown that the phase difference depends linearly on the distance energy ratio , the mass difference and an effective mass, in contrary to the linear dependance on and as the phase difference for equal energy or equal momentum assumption dose. The new phase difference implies different bounds on the neutrino masses or mass difference.
Comments: 10 pages; no figure; v3: more references added; some arguments added;