Composite fermion basis for M-component Bose gases
arXiv:1704.01772 · doi:10.1088/1751-8121/aa85f7
Abstract
The composite fermion (CF) formalism produces wave functions that are not always linearly independent. This is especially so in the low angular momentum regime in the lowest Landau level, where a subclass of CF states, known as simple states, gives a good description of the low energy spectrum. For the two-component Bose gas, explicit bases avoiding the large number of redundant states have been found. We generalize one of these bases to the -component Bose gas and prove its validity. We also show that the numbers of linearly independent simple states for different values of angular momentum are given by coefficients of -multinomials.
9 pages, 7 figures
References in corpus (6)
- Double species condensate with tunable interspecies interactions
- 39-K Bose-Einstein condensate with tunable interactions
- Quantum Hall physics in rotating Bose-Einstein condensates
- Rotational properties of two-component Bose gases in the lowest Landau level
- Linear dependencies between Composite Fermion states
- Composite fermion basis for two-component Bose gases