Spinon decay in the spin-1/2 Heisenberg chain with weak next nearest neighbour exchange
arXiv:1702.06550 · doi:10.1088/1751-8121/aa7d41
Abstract
Integrable models support elementary excitations with infinite lifetimes. In the spin-1/2 Heisenberg chain these are known as spinons. We consider the stability of spinons when a weak integrability breaking perturbation is added to the Heisenberg chain in a magnetic field. We focus on the case where the perturbation is a next nearest neighbour exchange interaction. We calculate the spinon decay rate in leading order in perturbation theory using methods of integrability and identify the dominant decay channels. The decay rate is found to be small, which indicates that spinons remain well-defined excitations even though integrability is broken.
29 pages, 8 figures
References in corpus (5)
- Spectral function of spinless fermions on a one-dimensional lattice
- Dynamical structure factor at small q for the XXZ spin-1/2 chain
- Spin-charge separation in one-dimensional fermion systems beyond the Luttinger liquid theory
- Characterization of resonances using finite size effects
- Spin-charge separated quasiparticles in one dimensional quantum fluids
Cited by in corpus (7)
- Roadmap on Atomtronics: State of the art and perspective
- Formation of robust bound states of interacting microwave photons
- Real-time scattering of interacting quasiparticles in quantum spin chains
- Non-equilibrium aspects of integrable models
- Transport and entanglement across integrable impurities from Generalized Hydrodynamics
- A variational method for integrability-breaking Richardson-Gaudin models
- Quantum Integrability and Quantum Groups: a special issue in memory of Petr P. Kulish