English

Energy of unstable states at long times

High Energy Physics - Phenomenology 2009-09-02 v2 Cosmology and Nongalactic Astrophysics Quantum Physics

Abstract

An effect generated by the nonexponential behavior of the survival amplitude of an unstable state in the long time region is considered. In 1957 Khalfin proved that this amplitude tends to zero as tt\to\infty more slowly than any exponential function of tt. For a time-dependent decay rate γ(t)\gamma(t) Khalfin's result means that this γ(t)\gamma(t) is not a constant for large tt but that it tends to zero as tt\to\infty. We find that a similar conclusion can be drawn for the instantaneous energy of the unstable state for a large class of models of unstable states: This energy tends to the minimal energy of the system Emin{\cal E}_{min} as tt\to\infty which is much smaller than the energy of this state for tt of the order of the lifetime of the considered state. Analyzing the transition time region between exponential and non-exponential form of the survival amplitude we find that the instantaneous energy of a considered unstable state can take large values, much larger than the energy of this state for tt from the exponential time region. Taking into account results obtained for a model considered, it is hypothesized that this purely quantum mechanical effect may be responsible for the properties of broad resonances such as σ\sigma meson as well as having astrophysical and cosmological consequences.

Keywords

Cite

@article{arxiv.0908.2219,
  title  = {Energy of unstable states at long times},
  author = {K. Urbanowski and J. Piskorski},
  journal= {arXiv preprint arXiv:0908.2219},
  year   = {2009}
}

Comments

21 pages, 9 figures, Talk given at the "14th Lomonosov Conference on Elementary Particle Physics", Moscow, Russia, August 19 -- 25, 2009; 1 Figure added, typos corrected