It has recently been pointed out that phases of matter with intrinsic topological order, like the fractional quantum Hall states, have an extra dynamical degree of freedom that corresponds to quantum geometry. Here we perform extensive numerical studies of the geometric degree of freedom for the simplest example of fractional quantum Hall states -- the filling $\nu=1/3$ Laughlin state. We perturb the system by a smooth, spatially dependent metric deformation and measure the response of the Hall fluid, finding it to be proportional to the Gaussian curvature of the metric. Further, we generalize the concept of coherent states to formulate the bulk off-diagonal long range order for the Laughlin state, and compute the deformations of the metric...
Geometric aspect of condensed matter has arouse a lot of interests in recent years. The idea of Berr...
Advancing a microscopic framework that rigorously unveils the underlying topological hallmarks of fr...
In this thesis we characterize various topological phases of matter by studying their response to ex...
It has recently been pointed out that phases of matter with intrinsic topological order, like the fr...
Expository text based on joint works with Elliott H. Lieb, Alessandro Olgiati, Sylvia Serfaty and Ja...
Laughlin states are N-particle wave functions, successfully describing the fractional quantum Hall e...
We study the change of the Laughlin states under large deformations of the geometry of the sphere an...
We find the Laughlin states of the electrons on the Poincare half-plane in different representations...
We introduce a quench of the geometry of Landau level orbitals as a probe of non-equilibrium dynamic...
The quantum Hall effect occuring in two-dimensional electron gases was first explained by Laughlin, ...
Contribution to the second edition of the Encyclopedia of condensed matter physics. Partially based ...
The fractional quantum Hall effect was experimentally discovered in 1982: It was observed that the H...
This paper has its motivation in the study of the Fractional Quantum Hall Effect. We consider 2D qua...
Jaynes-Cummings-Hubbard arrays provide unique opportunities for quantum emulation as they exhibit co...
International audienceWe generalize the flux insertion argument due to Laughlin, Niu-Thouless-Tao-Wu...
Geometric aspect of condensed matter has arouse a lot of interests in recent years. The idea of Berr...
Advancing a microscopic framework that rigorously unveils the underlying topological hallmarks of fr...
In this thesis we characterize various topological phases of matter by studying their response to ex...
It has recently been pointed out that phases of matter with intrinsic topological order, like the fr...
Expository text based on joint works with Elliott H. Lieb, Alessandro Olgiati, Sylvia Serfaty and Ja...
Laughlin states are N-particle wave functions, successfully describing the fractional quantum Hall e...
We study the change of the Laughlin states under large deformations of the geometry of the sphere an...
We find the Laughlin states of the electrons on the Poincare half-plane in different representations...
We introduce a quench of the geometry of Landau level orbitals as a probe of non-equilibrium dynamic...
The quantum Hall effect occuring in two-dimensional electron gases was first explained by Laughlin, ...
Contribution to the second edition of the Encyclopedia of condensed matter physics. Partially based ...
The fractional quantum Hall effect was experimentally discovered in 1982: It was observed that the H...
This paper has its motivation in the study of the Fractional Quantum Hall Effect. We consider 2D qua...
Jaynes-Cummings-Hubbard arrays provide unique opportunities for quantum emulation as they exhibit co...
International audienceWe generalize the flux insertion argument due to Laughlin, Niu-Thouless-Tao-Wu...
Geometric aspect of condensed matter has arouse a lot of interests in recent years. The idea of Berr...
Advancing a microscopic framework that rigorously unveils the underlying topological hallmarks of fr...
In this thesis we characterize various topological phases of matter by studying their response to ex...