Quantum Radiation of Oscillons
arXiv:1003.3459 · doi:10.1103/PhysRevD.82.045022
Abstract
Many classical scalar field theories possess remarkable solutions: coherently oscillating, localized clumps, known as oscillons. In many cases, the decay rate of classical small amplitude oscillons is known to be exponentially suppressed and so they are extremely long lived. In this work we compute the decay rate of quantized oscillons. We find it to be a power law in the amplitude and couplings of the theory. Therefore, the quantum decay rate is very different to the classical decay rate and is often dominant. We show that essentially all oscillons eventually decay by producing outgoing radiation. In single field theories the outgoing radiation has typically linear growth, while if the oscillon is coupled to other bosons the outgoing radiation can have exponential growth. The latter is a form of parametric resonance: explosive energy transfer from a localized clump into daughter fields. This may lead to interesting phenomenology in the early universe. Our results are obtained from a perturbative analysis, a non-perturbative Floquet analysis, and numerics.
16 pages, 6 figures. V2: Expanded sections 1 and 2 plus other minor changes, added references. V3: Updated to resemble version published in Phys. Rev. D. V4: Slight rewording in 2nd paragraph
References in corpus (11)
- Flat-top oscillons in an expanding universe
- Small amplitude quasi-breathers and oscillons
- An Electroweak Oscillon
- Emergence of Oscillons in an Expanding Background
- Analytical Characterization of Oscillon Energy and Lifetime
- Unnatural Oscillon Lifetimes in an Expanding Background
- Oscillons and Domain Walls
- Oscillons in Scalar Field Theories: Applications in Higher Dimensions and Inflation
- Numerical Simulation of an Electroweak Oscillon
- Bubbling the False Vacuum Away
- A Class of Nonperturbative Configurations in Abelian-Higgs Models: Complexity from Dynamical Symmetry Breaking
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- Entanglement Entropy in Scalar Field Theory
- Inflaton fragmentation: Emergence of pseudo-stable inflaton lumps (oscillons) after inflation
- Analysis of Oscillons in the SU(2) Gauged Higgs Model