Eigenmodal Analysis of Anderson Localization: Applications to Photonic Lattices and Bose-Einstein Condensates
arXiv:1509.01139 · doi:10.1016/j.physb.2016.07.018
Abstract
We present the eigenmodal analysis techniques enhanced towards calculations of optical and non-interacting Bose-Einstein condensate (BEC) modes formed by random potentials and localized by Anderson effect. The results are compared with the published measurements and verified additionally by the convergence criterion. In 2-D BECs captured in circular areas, the randomness shows edge localization of the high-order Tamm-modes. To avoid strong diffusive effect, which is typical for BECs trapped by speckle potentials, a 3-D-lattice potential with increased step magnitudes is proposed, and the BECs in these lattices are simulated and plotted.
29 pages, 13 figures
References in corpus (6)
- Photonic Floquet Topological Insulators
- Direct observation of Anderson localization of matter-waves in a controlled disorder
- Anderson Localization of Expanding Bose-Einstein Condensates in Random Potentials
- Hybrid Bloch-Anderson localization of light
- Microwave-Driven Atoms: From Anderson Localization to Einstein's Photoeffect
- Electronic control of edge-mode spectrum of integer-hall-effect 2d electron waveguides