Cosmic bubble and domain wall instabilities I: parametric amplification of linear fluctuations
arXiv:1412.5591 · doi:10.1088/1475-7516/2015/03/007
Abstract
This is the first paper in a series where we study collisions of nucleated bubbles taking into account the effects of small initial (quantum) fluctuations in a fully 3+1-dimensional setting. In this paper, we consider the evolution of linear fluctuations around highly symmetric though inhomogeneous backgrounds. We demonstrate that a large degree of asymmetry develops over time from tiny fluctuations superposed upon planar and SO(2,1) symmetric backgrounds. These fluctuations arise from zero-point vacuum oscillations, so excluding them by enforcing a spatial symmetry is inconsistent in a quantum treatment. We consider the limit of two colliding planar walls, with fluctuation mode functions characterized by the wavenumber transverse to the collision direction and a longitudinal shape along the collision direction , which we solve for. Initially, the fluctuations obey a linear wave equation with a time- and space-dependent mass . When the walls collide multiple times, oscillates in time. We use Floquet theory to study the fluctuations and generalize techniques familiar from preheating to the case with many coupled degrees of freedom. This inhomogeneous case has bands of unstable transverse wavenumbers with exponentially growing mode functions. From the detailed spatial structure of the mode functions in , we identify both broad and narrow parametric resonance generalizations of the homogeneous case of preheating. The unstable modes are longitudinally localized, yet can be described as quasiparticles in the Bogoliubov sense. We define an effective occupation number to show they are created in bursts for the case of well-defined collisions in the background. The transverse-longitudinal coupling accompanying nonlinearity radically breaks this localized particle description, with nonseparable 3D modes arising.
37 pages + references, 20 figures, submitted to JCAP
References in corpus (9)
- Reheating in Inflationary Cosmology: Theory and Applications
- Small amplitude quasi-breathers and oscillons
- The Art of Lattice and Gravity Waves from Preheating
- Surviving the crash: assessing the aftermath of cosmic bubble collisions
- Fermions on Colliding Branes
- Simulating the universe(s) II: phenomenology of cosmic bubble collisions in full General Relativity
- Collision of Domain Walls in asymptotically Anti de Sitter spacetime
- Particle transfer in braneworld collisions
- The fermion spectrum in braneworld collisions
Cited by in corpus (31)
- Gravitational waves from vacuum first-order phase transitions: from the envelope to the lattice
- Cosmic phase transitions: their applications and experimental signatures
- Gravitational waves from vacuum first order phase transitions II: from thin to thick walls
- String Fragmentation in Supercooled Confinement and Implications for Dark Matter
- A New Semiclassical Picture of Vacuum Decay
- Cosmic bubble and domain wall instabilities III: The role of oscillons in three-dimensional bubble collisions
- Suppression of two-bounce windows in kink-antikink collisions
- Relativistic bubble collisions -- a closer look
- Towards the cold atom analog false vacuum
- Nonlinear Dynamics of the Cold Atom Analog False Vacuum
- Collision of two kinks with inner structure
- Boundary scattering in the model
- Parametric resonance after hilltop inflation caused by an inhomogeneous inflaton field
- Black Hole Formation from the Collision of Plane-Fronted Gravitational Waves
- False vacuum decay in kink scattering
- Cosmic bubble and domain wall instabilities II: Fracturing of colliding walls
- Bubble Clustering in Cosmological First Order Phase Transitions
- Constraining cosmological ultra-large scale structure using numerical relativity
- Universal dynamics of rogue waves in a quenched spinor Bose condensate
- Bubble velocities and oscillon precursors in first-order phase transitions
- Gravitational collapse of quantum fields and Choptuik scaling
- Anomalous scaling at non-thermal fixed points of the sine-Gordon model
- Gravitational collapse with quantum fields
- Tunneling decay of false domain walls: the silence of the lambs
- Thin and thick bubble walls I: vacuum phase transitions
- Observable Signatures of a Classical Transition
- Gravitational waves from vacuum bubbles: Ultraviolet dependence on wall thickness
- Thin and thick bubble walls II: expansion in the wall width
- Vacuum bubble collisions: from microphysics to gravitational waves
- Accretion of a Symmetry Breaking Scalar Field by a Schwarzschild Black Hole
- Forecasting constraints from the cosmic microwave background on eternal inflation