We design an ingenious scheme to realize Haldane's quantum Hall model without Landau levels by using ultracold atoms trapped in an optical lattice. Three standing-wave laser beams are used to construct a wanted honeycomb lattice, where different on site energies in two sublattices required in the model can be implemented through tuning the phase of one laser beam. The staggered magnetic field is generated from the light-induced Berry phase. Moreover, we establish a relation between the Hall conductivity and the atomic density, enabling us to detect the Chern number with the typical density-profile-measurement technique. © 2008 The American Physical Society.link_to_subscribed_fulltex
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
This electronic version was submitted by the student author. The certified thesis is available in th...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
We propose a realistic scheme to detect the 4D quantum Hall effect using ultracold atoms. Based on c...
12 pages, 6 figures. Revised and extended version accepted for publication in Journal of Physics B: ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
We propose a scheme to realize bosonic fraction quantum Hall conductance in shaken honeycomb optical...
This thesis represents a body of work investigating the physics of strongly interacting quantum part...
The imaging of neutral atoms confined in an optical lattice has been demonstrated by a number of gro...
We propose an experimental scheme to realize the quantum anomalous Hall effect in an anisotropic squ...
Ultracold atoms in optical lattices are very interesting and exciting quantum systems that can be us...
International audienceIn two dimensions strongly interacting bosons in a magnetic field can realize ...
We propose a hexagonal optical lattice system with spatial variations in the hopping matrix elements...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
This electronic version was submitted by the student author. The certified thesis is available in th...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
We propose a realistic scheme to detect the 4D quantum Hall effect using ultracold atoms. Based on c...
12 pages, 6 figures. Revised and extended version accepted for publication in Journal of Physics B: ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
We propose a scheme to realize bosonic fraction quantum Hall conductance in shaken honeycomb optical...
This thesis represents a body of work investigating the physics of strongly interacting quantum part...
The imaging of neutral atoms confined in an optical lattice has been demonstrated by a number of gro...
We propose an experimental scheme to realize the quantum anomalous Hall effect in an anisotropic squ...
Ultracold atoms in optical lattices are very interesting and exciting quantum systems that can be us...
International audienceIn two dimensions strongly interacting bosons in a magnetic field can realize ...
We propose a hexagonal optical lattice system with spatial variations in the hopping matrix elements...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
This electronic version was submitted by the student author. The certified thesis is available in th...