Ultracold atoms in optical lattices have great potential to contribute to a better understanding of some of the most important issues in many-body physics, such as high-temperature superconductivity. The Hubbard model—a simplified representation of fermions moving on a periodic lattice—is thought to describe the essential details of copper oxide superconductivity. This model describes many of the features shared by the copper oxides, including an interaction-driven Mott insulating state and an antiferromagnetic (AFM) state. Optical lattices filled with a two-spin-component Fermi gas of ultracold atoms can faithfully realize the Hubbard model with readily tunable parameters, and thus provide a platform for the systematic exploration of its p...
The Fermi-Hubbard model is one of the key models of condensed matter physics, which holds a potentia...
This thesis presents a theoretical analysis of light scattered from atoms trapped in optical lattice...
We study the possibility of realizing strong coupled many-body quantum phases in ultracold atomic sy...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
The Hubbard model contains only the essential ingredients to describe the behavior of strongly inter...
Mott insulators are paradigms of strongly correlated physics, giving rise to phases of matter with n...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
The grand challenge of condensed matter physics is to understand the emergence of novel phases arisi...
An outstanding problem in physics is how to understand strongly interacting quantum many-body system...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
We can use ultracold neutral atoms in a regular periodic potential called an optical lattice to map ...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
The Fermi-Hubbard model is one of the key models of condensed matter physics, which holds a potentia...
This thesis presents a theoretical analysis of light scattered from atoms trapped in optical lattice...
We study the possibility of realizing strong coupled many-body quantum phases in ultracold atomic sy...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
Ultracold atoms in optical lattices have great potential to contribute to a better understanding of ...
The Hubbard model contains only the essential ingredients to describe the behavior of strongly inter...
Mott insulators are paradigms of strongly correlated physics, giving rise to phases of matter with n...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
The grand challenge of condensed matter physics is to understand the emergence of novel phases arisi...
An outstanding problem in physics is how to understand strongly interacting quantum many-body system...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
We can use ultracold neutral atoms in a regular periodic potential called an optical lattice to map ...
Systems of ultracold atoms in optical potentials have taken a place at the forefront of research int...
This thesis explores certain extraordinary phenomena that occur when a gas of neutral atoms is coole...
The Fermi-Hubbard model is one of the key models of condensed matter physics, which holds a potentia...
This thesis presents a theoretical analysis of light scattered from atoms trapped in optical lattice...
We study the possibility of realizing strong coupled many-body quantum phases in ultracold atomic sy...