Quantum hall states for ?=1/3 in Optical lattices
Source
7th Topical Conference of the Indian Society of Atomic and Molecular Physics (ISAMP)
Date Issued
2018-01-01
Author(s)
Bai, Rukmani
Bandyopadhyay, Soumik
Pal, Sukla
Suthar, K
Angom, D.
Abstract
We examine the quantum Hall (QH) states of the optical lattices with square geometry using Bose–Hubbard model (BHM) in presence of artificial gauge field. In particular, we focus on the QH states for the flux value of α= 1 / 3. For this, we use cluster Gutzwiller mean field (CGMF) theory with cluster sizes of 3 × 2 and 3 × 3. We obtain QH states at fillings ν= 1 / 2, 1, 3 / 2, 2, 5 / 2 with the cluster size 3 × 2 and ν= 1 / 3, 2 / 3, 1, 4 / 3, 5 / 3, 2, 7 / 3, 8 / 3 with 3 × 3 cluster. Our results show that the geometry of the QH states is sensitive to the cluster sizes. For all the values of ν, the competing superfluid (SF) state is the ground state and QH state is the metastable state.
