Convexity, gauge-dependence and tunneling rates
arXiv:1510.07613 · doi:10.1007/JHEP10(2016)099
Abstract
We clarify issues of convexity, gauge-dependence and radiative corrections in relation to tunneling rates. Despite the gauge dependence of the effective action at zero and finite temperature, it is shown that tunneling and nucleation rates remain independent of the choice of gauge-fixing. Taking as a starting point the functional that defines the transition amplitude from a false vacuum onto itself, it is shown that decay rates are exactly determined by a non-convex, false vacuum effective action evaluated at an extremum. The latter can be viewed as a generalized bounce configuration, and gauge-independence follows from the appropriate Nielsen identities. This holds for any election of gauge-fixing that leads to an invertible Faddeev-Popov matrix.
26 pages. v2. Improved discussion addressing issues of convexity, and distinguishing between false and true vacuum functionals. v3. Published version. Structured into sections, expanded discussion on Jacobian
References in corpus (14)
- Stability of the Electroweak Vacuum: Gauge Independence and Advanced Precision
- The cosmological Higgstory of the vacuum instability
- Consistent Use of the Standard Model Effective Potential
- Consistent Use of Effective Potentials
- On the gauge dependence of vacuum transitions at finite temperature
- On the gauge dependence of the Standard Model vacuum instability scale
- A direct approach to quantum tunneling
- Self-consistent solitons for vacuum decay in radiatively generated potentials
- Green's function method for handling radiative effects on false vacuum decay
- On the fate of the Standard Model at finite temperature
- Constraining the effective action by a method of external sources
- Removing the gauge parameter dependence of the effective potential by a field redefinition
- The One-Loop Effective Potential in Non-Linear Gauges
- Gauge fixing and renormalisation scale independence of tunneling rate in abelian Higgs model and in the Standard Model
Cited by in corpus (51)
- Cosmological phase transitions: from perturbative particle physics to gravitational waves
- Cosmic phase transitions: their applications and experimental signatures
- Theoretical uncertainties for cosmological first-order phase transitions
- Phase transitions in the early universe
- Precision decay rate calculations in quantum field theory
- Cosmological Aspects of Higgs Vacuum Metastability
- State-of-the-Art Calculation of the Decay Rate of Electroweak Vacuum in Standard Model
- Non-resonant Collider Signatures of a Singlet-Driven Electroweak Phase Transition
- Effective field theory approach to thermal bubble nucleation
- The 1-loop effective potential for the Standard Model in curved spacetime
- Decay Rate of Electroweak Vacuum in the Standard Model and Beyond
- Gauge-Independent Scales Related to the Standard Model Vacuum Instability
- A direct approach to quantum tunneling
- BubbleDet: A Python package to compute functional determinants for bubble nucleation
- Inflationary physics and transplanckian conjecture in the Stringy Running-Vacuum-Model: from the phantom vacuum to the true vacuum
- Functional methods for false vacuum decay in real time
- Constraining the effective action by a method of external sources
- On the Gauge Invariance of the Decay Rate of False Vacuum
- Two-loop effective potential for generalized gauge fixing
- Assessing Perturbativity and Vacuum Stability in High-Scale Leptogenesis
- False Vacuum Decay in Gauge Theory
- Black hole induced false vacuum decay: The role of greybody factors
- Standard Model vacuum decay in a de Sitter Background
- Gradient effects on false vacuum decay in gauge theory
- Gauge fixing and renormalisation scale independence of tunneling rate in abelian Higgs model and in the Standard Model
- Gravitational corrections to Higgs potentials
- Multiplicative renormalization of Yang-Mills theories in the background-field formalism
- Gauge dependence and multiplicative renormalization of Yang-Mills theory with matter fields
- Exact RG Invariance and Symmetry Improved 2PI Effective Potential
- Phase Transitions and Baryogenesis From Decays
- Fluctuations about the Fubini-Lipatov instanton for false vacuum decay in classically scale invariant models
- Tunnelling and dynamical violation of the Null Energy Condition
- False vacuum decay rates, more precisely
- A nonperturbative test of nucleation calculations for strong phase transitions
- Correspondence between Thermal and Quantum Vacuum Transitions around Horizons
- Two-loop corrections to false vacuum decay in scalar field theory
- Fate of False Vacuum in Non-perturbative Regimes
- Precise Calculation of the Decay Rate of False Vacuum with Multi-Field Bounce
- Null energy condition violation: Tunnelling versus the Casimir effect
- Cosmic bounce and phantom-like equation of state from tunnelling
- Quantum and Gradient Corrections to False Vacuum Decay on a de Sitter Background
- Double-well instantons in finite volume
- Saving the universe with finite volume effects
- Non-perturbative aspects of galileon duality
- The limits of the strong problem
- Radiative corrections to false vacuum decay in quantum mechanics
- One-loop tunnelling-induced energetics
- Gauge invariance of the vector meson mass in the Coleman-Weinberg model
- Tunnelling-induced cosmic bounce in the presence of anisotropies
- Effective potential in non-perturbative gauge theories
- NNLO corrections to false vacuum decay rate in thin-wall approximation