Time evolution of cascade decay
arXiv:1403.6366 · doi:10.1088/1367-2630/16/6/063050
Abstract
We study non-perturbatively the time evolution of cascade decay for generic fields and obtain the time dependence of amplitudes and populations for the resonant and final states. We analyze in detail the different time scales and the manifestation of unitary time evolution in the dynamics of production and decay of resonant intermediate and final states. The probability of occupation (population) "flows" as a function of time from the initial to the final states. When the decay width of the parent particle is much larger than that of the intermediate resonant state there is a "bottleneck" in the flow, the population of resonant states builds up to a maximum at nearly saturating unitarity and decays to the final state on the longer time scale . As a consequence of the wide separation of time scales in this case the cascade decay can be interpreted as evolving sequentially . In the opposite limit the population of resonances () does not build up substantially and the cascade decay proceeds almost directly from the initial parent to the final state without resulting in a large amplitude of the resonant state. An alternative but equivalent non-perturbative method useful in cosmology is presented. Possible phenomenological implications for heavy sterile neutrinos as resonant states and consequences of quantum entanglement and correlations in the final state are discussed.
typos corrected, references updated
References in corpus (18)
- Observation of Time Reversal Violation in the B0 Meson System
- Lecture notes on interacting quantum fields in de Sitter space
- Resolution of puzzles from the LSND, KARMEN, and MiniBooNE experiments
- Quantum-tomography of entangled photon pairs by quantum-dot cascade decay
- Interacting Field Theories in de Sitter Space are Non-Unitary
- Systematic approach to thermal leptogenesis
- Condensates and quasiparticles in inflationary cosmology: mass generation and decay widths
- Non-Markovian Decay of a Three Level Cascade Atom in a Structured Reservoir
- On the Perturbative Stability of Quantum Field Theories in de Sitter Space
- Classical radiation by free-falling charges in de Sitter spacetime
- Remarks on the lifetime of sterile neutrinos and the effect on detection of rare meson decays M+ -> M'- lepton+ lepton+
- CP violations in Meson Decay
- Modified Contour-Improved Perturbation Theory
- Theory of non-Markovian decay of a cascade atom in high-Q cavities and photonic band-gap materials
- Entangled photon pairs from a quantum dot cascade decay: the effect of time-reordering
- Superhorizon entanglement entropy from particle decay in inflation
- The LSND/MiniBooNe excess events and heavy neutrino from muon and kaon decays
- A fresh look at neutral meson mixing
Cited by in corpus (10)
- Kadanoff-Baym Approach to Flavour Mixing and Oscillations in Resonant Leptogenesis
- Infrared dynamics of massive scalars from the complementary series in de Sitter space
- Oscillation of heavy sterile neutrino in decay of
- Nearly degenerate heavy sterile neutrinos in cascade decay: mixing and oscillations
- Cosmological Implications of Light Sterile Neutrinos produced after the QCD Phase Transition
- Lepton asymmetry from mixing and oscillations
- Production of heavy sterile neutrinos from vector boson decay at electroweak temperatures
- A quantum heating as an alternative of reheating
- Space-time evolution of heavy sterile neutrinos in cascade decays
- The case for mixed dark matter from sterile neutrinos