Surface modes of ultracold atomic clouds with very large number of vortices
arXiv:cond-mat/0207715 · doi:10.1103/PhysRevA.67.063613
Abstract
We study the surface modes of some of the vortex liquids recently found by means of exact diagonalizations in systems of rapidly rotating bosons. In contrast to the surface modes of Bose condensates, we find that the surface waves have a frequency linear in the excitation angular momentum, . Furthermore, in analogy with the edge waves of electronic quantum Hall states, these excitations are {\it chiral}, that is, they can be excited only for values of that increase the total angular momentum of the vortex liquid. However, differently from the quantum Hall phenomena for electrons, we also find other excitations that are approximately degenerate in the laboratory frame with the surface modes, and which decrease the total angular momentum by quanta. The surface modes of the Laughlin, as well as other scalar and vector boson states are analyzed, and their {\it observable} properties characterized. We argue that measurement of the response of a vortex liquid to a weak time-dependent potential that imparts angular momentum to the system should provide valuable information to characterize the vortex liquid. In particular, the intensity of the signal of the surface waves in the dynamic structure factor has been studied and found to depend on the type of vortex liquid. We point out that the existence of surface modes has observable consequences on the density profile of the Laughlin state. These features are due to the strongly correlated behavior of atoms in the vortex liquids. We point out that these correlations should be responsible for a remarkable stability of some vortex liquids with respect to three-body losses.
28 pages + 6 EPS figures. Final version as accepted for publication in Phys. Rev. A
References in corpus (8)
- Quantum Phases of Vortices in Rotating Bose-Einstein Condensates
- Bose-Einstein Condensates with Large Number of Vortices
- 1/2-Anyons in small atomic Bose-Einstein condensates
- Nonequilibrium effects of anisotropic compression applied to vortex lattices in Bose-Einstein condensates
- Quantum Melting and Absence of Bose-Einstein Condensation in Two-Dimensional Vortex Matter
- Critical rotation of a harmonically trapped Bose gas
- Quantum Hall states and boson triplet condensate for rotating spin-1 bosons
- Fermionizing a small gas of ultracold bosons
Cited by in corpus (25)
- Many-Body Physics with Ultracold Gases
- Rapidly Rotating Atomic Gases
- Fragmentation of Bose-Einstein Condensates
- Vortices in multicomponent Bose-Einstein condensates
- Fractional Quantum Hall States in Ultracold Rapidly Rotating Dipolar Fermi Gases
- Quantum Hall fractions for spinless Bosons
- Mean-field analysis of the stability of a K-Rb Fermi-Bose mixture
- Strongly Correlated States of Ultracold Rotating Dipolar Fermi Gases
- Vortex lattices in rapidly rotating Bose-Einstein condensates: modes and correlation functions
- Ordered structures in rotating ultracold Bose gases
- Topological growing of Laughlin states in synthetic gauge fields
- Fractional quantum Hall states of few bosonic atoms in geometric gauge fields
- Strongly correlated states of a small cold atomic cloud from geometric gauge fields
- Edge excitations and Topological orders in rotating Bose gases
- Quantum Hall states of atomic Bose gases: density profiles in single-layer and multi-layer geometries
- Quantum Hall fractions in ultracold fermionic vapors
- Hard-Wall Confinement of a Fractional Quantum Hall Liquid
- Topological phases in small quantum Hall samples
- Linear and nonlinear edge dynamics of trapped fractional quantum Hall droplets
- Ring-shaped fractional quantum Hall liquids with hard-wall potentials
- Hall response of interacting bosonic atoms in strong gauge fields: from condensed to FQH states
- Surface waves and bulk Ruderman mode of a bosonic superfluid vortex crystal in the lowest Landau level
- Quantum nonlinear optics on the edge of a few-particle fractional quantum Hall fluid in a small lattice
- Refermionized theory of the edge modes of a fractional quantum Hall cloud
- Anti-Holomorphic Modes in Vortex Lattices