On the Hydrodynamics of Unstable Excitations
arXiv:2005.11266 · doi:10.1007/JHEP09(2020)045
Abstract
The generalized hydrodynamic (GHD) approach has been extremely successful in describing the out-of-equilibrium properties of a great variety of integrable many-body quantum systems. It naturally extracts the large-scale dynamical degrees of freedom of the system, and is thus a particularly good probe for emergent phenomena. One such phenomenon is the presence of unstable particles, traditionally seen via special analytic structures of the scattering matrix. Because of their finite lifetime and energy threshold, these are especially hard to study. In this paper we apply the GHD approach to a model possessing both unstable excitations and quantum integrability. The largest family of relativistic integrable quantum field theories known to have these features are the homogeneous sine-Gordon models. We consider the simplest non-trivial example of such theories and investigate the effect of an unstable excitation on various physical quantities, both at equilibrium and in the non-equilibrium state arising from the partitioning protocol. The hydrodynamic approach sheds new light onto the physics of the unstable particle, going much beyond its definition via the analytic structure of the scattering matrix, and clarifies its effects both on the equilibrium and out-of-equilibrium properties of the theory. Crucially, within this dynamical perspective, we identify unstable particles as finitely-lived bound states of co-propagating stable particles of different types, and observe how stable populations of unstable particles emerge in large-temperature thermal baths.
36 pages, 32 figures, 2 tables
References in corpus (17)
- Correlations after quantum quenches in the XXZ spin chain: Failure of the Generalized Gibbs Ensemble
- "Light-cone" dynamics after quantum quenches in spin chains
- Generalized TBA and generalized Gibbs
- Quasilocal conservation laws in XXZ spin-1/2 chains: open, periodic and twisted boundary conditions
- Diffusive hydrodynamics from integrability breaking
- Algebraic construction of current operators in integrable spin chains
- Breakdown of the generalized Gibbs ensemble for current-generating quenches
- Local and Quasilocal Conserved Quantities in Integrable Systems
- Locally quasi-stationary states in noninteracting spin chains
- Current operators in integrable spin chains: lessons from long range deformations
- Charges and currents in quantum spin chains: late-time dynamics and spontaneous currents
- The collision rate ansatz for the classical Toda lattice
- Non-Equilibrium Conformal Field Theories with Impurities
- Exact finite volume expectation values of conserved currents
- On the Hydrodynamics of Unstable Excitations
- Form factor relocalisation and interpolating renormalisation group flows from the staircase model
- Energy transport between critical one-dimensional systems with different central charges
Cited by in corpus (7)
- Hydrodynamics of weak integrability breaking
- On the Hydrodynamics of Unstable Excitations
- The Staircase Model: Massless Flows and Hydrodynamics
- Generalised Hydrodynamics of Particle Creation and Decay
- Tails of Instability and Decay: a Hydrodynamic Perspective
- Entanglement of Stationary States in the Presence of Unstable Quasiparticles
- Inhomogeneous quantum quenches in the sine-Gordon theory