Nonlinear excitations beyond the mean-field in dipolar Bose-Einstein condensates
Study of properties of Bose-Einstein condensates: dipolar atoms
Study of properties of Bose-Einstein Condensate: dipolar atoms and condensate of f...
Full text | |
Author(s): |
Young-S, Luis E.
;
Adhikari, S. K.
Total Authors: 2
|
Document type: | Journal article |
Source: | PHYSICAL REVIEW A; v. 105, n. 3, p. 9-pg., 2022-03-21. |
Abstract | |
We demonstrate a supersolid-like spatially periodic square- and honeycomb-lattice crystallization of droplets in addition to the commonly studied triangular-lattice crystallization in a cylindrically symmetric quasi-two-dimensional trapped dipolar condensate, using a beyond-mean-field model including a quantum-fluctuation Lee-Huang-Yang-type interaction. These three types of crystallization of droplets may appear for the same atomic interaction and the same trap frequencies. The energies E of all three crystallizations as a function of the number N of atoms satisfy the universal scaling relation E similar to N-0.4, indicating that all three arrangements of the droplets should be energetically probable processes of phenomenological interest. The state of square-lattice crystallization may have the central site occupied or unoccupied, corresponding to a parity-symmetric or parity-antisymmetric state, respectively. The state of square-lattice crystallization with the occupied central site and the state of triangular-lattice crystallization, for a fixed N, constitute two quasidegenerate ground states, while the other states are low-lying excited states. This makes the square-lattice crystallization with the occupied central site an ideal candidate for future experimental observation. (AU) | |
FAPESP's process: | 16/01343-7 - ICTP South American Institute for Fundamental Research: a regional center for theoretical physics |
Grantee: | Nathan Jacob Berkovits |
Support Opportunities: | Special Projects |