On the jets emitted by driven Bose-Einstein condensates
arXiv:1801.05515 · doi:10.1088/1361-6455/aafbb1
Abstract
Features of the emission of jets by driven Bose-Einstein condensates, discovered by Clark et al. (Nature 551, 356359), can be understood by drawing analogies with particle physics. In particular, the widening of the peak in the angular correlation function is due to a dijet acollinearity, which I estimate to be about 5 RMS. I also propose new correlation studies using observables commonly used in studies of the quark-gluon plasma.
References in corpus (5)
- Collective emission of matter-wave jets from driven Bose-Einstein condensates
- Jet Properties from Dihadron Correlations in p+p Collisions at sqrt(s)=200 GeV
- Density waves and jet emission asymmetry in Bose Fireworks
- Atom-atom correlations in colliding Bose-Einstein condensates
- Anisotropic flow from Lee-Yang zeroes: a practical guide
Cited by in corpus (5)
- Complex correlations in high harmonic generation of matter-wave jets revealed by pattern recognition
- Dynamics and Density Correlations in Matter Wave Jet Emission of a Driven Condensate
- Jet Sub-structure in Fireworks Emission from Non-uniform and Rotating Bose-Einstein Condensates
- Emission of correlated jets from a driven matter-wave soliton in a quasi-one-dimensional geometry
- Driving Quantum Correlated Atom-Pairs from a Bose-Einstein Condensate