Topological invariants, such as the Chern number, characterize topological phases of matter. Here we provide a method to detect Chern numbers in systems with two distinct species of fermion, such as spins, orbitals or several atomic states. We analytically show that the Chern number can be decomposed as a sum of component specific winding numbers, which are themselves physically observable. We apply this method to two systems, the quantum spin Hall insulator and a staggered topological superconductor, and show that (spin) Chern numbers are accurately reproduced. The measurements required for constructing the component winding numbers also enable one to probe the entanglement spectrum with respect to component partitions. Our method is parti...
The use of topological invariants to describe geometric phases of quantum matter has become an esse...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
The concept of topology in condensed matter physics has led to the discovery of rich and exotic phys...
Topological invariants, such as the Chern number, characterize topological phases of matter. Here we...
In part I, we describe a protected qubit which is realized in a two-dimensional array of Josephson j...
In part I, we describe a protected qubit which is realized in a two-dimensional array of Josephson j...
We propose characterization of the three-dimensional topological insulator by using the Chern number...
We study Chern numbers to characterize the ground state of strongly interacting systems on a lattice...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...
This thesis contains work in three areas. The works are presented chronologically starting with my w...
https://arxiv.org/abs/1507.07805International audienceThe present chapter discusses methods by which...
https://arxiv.org/abs/1507.07805International audienceThe present chapter discusses methods by which...
Chern numbers are gaining traction as they characterize topological phases in various physical syste...
International audienceUltracold fermions trapped in a honeycomb optical lattice constitute a versati...
The entanglement Chern number, the Chern number for the entanglement Hamiltonian, is used to charact...
The use of topological invariants to describe geometric phases of quantum matter has become an esse...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
The concept of topology in condensed matter physics has led to the discovery of rich and exotic phys...
Topological invariants, such as the Chern number, characterize topological phases of matter. Here we...
In part I, we describe a protected qubit which is realized in a two-dimensional array of Josephson j...
In part I, we describe a protected qubit which is realized in a two-dimensional array of Josephson j...
We propose characterization of the three-dimensional topological insulator by using the Chern number...
We study Chern numbers to characterize the ground state of strongly interacting systems on a lattice...
A peculiar feature of the majority of three-dimensional topological insulator surface states studied...
This thesis contains work in three areas. The works are presented chronologically starting with my w...
https://arxiv.org/abs/1507.07805International audienceThe present chapter discusses methods by which...
https://arxiv.org/abs/1507.07805International audienceThe present chapter discusses methods by which...
Chern numbers are gaining traction as they characterize topological phases in various physical syste...
International audienceUltracold fermions trapped in a honeycomb optical lattice constitute a versati...
The entanglement Chern number, the Chern number for the entanglement Hamiltonian, is used to charact...
The use of topological invariants to describe geometric phases of quantum matter has become an esse...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
The concept of topology in condensed matter physics has led to the discovery of rich and exotic phys...