Analytic solution of the dynamics of quantum vortex reconnection
arXiv:1307.5282 · doi:10.1103/PhysRevLett.111.145302
Abstract
Experimental and simulational studies of the dynamics of vortex reconnections in quantum fluids showedthat the distance between the reconnecting vortices is close to a universal time dependence with fluctuating around 1/2 and is the quantum of circulation. Dimensional analysis, based on the assumption that the quantum of circulation is the only relevant parameter in the problem, predicts . The theoretical calculation of the dimensionless coefficient in this formula remained an open problem. In this Letter we present an analytic calculation of in terms of the given geometry of the reconnecting vortices. We start from the numerically observed generic geometry on the way to vortex reconnection and demonstrate that the dynamics is well described by a self-similar analytic solution which provides the wanted information.
4 pages, 4 figs, PRL submitted
References in corpus (1)
Cited by in corpus (8)
- Helicity, Topology and Kelvin Waves in reconnecting quantum knots
- Irreversible dynamics of vortex reconnections in quantum fluids
- Separation scaling for viscous vortex reconnection
- Reconnection of vortex filaments and Kolmogorov spectrum
- Dynamics of quantized vortices moving towards reconnection
- Kelvin waves from vortex reconnection in superfluid helium at low temperatures
- Dynamics of the vortex line density in superfluid counterflow turbulence
- Towards a finite-time singularity of the Navier-Stokes equations