Topological insulators are fascinating states of matter exhibiting protected edge states and robust quantized features in their bulk. Here we propose and validate experimentally a method to detect topological properties in the bulk of one-dimensional chiral systems. We first introduce the mean chiral displacement, an observable that rapidly approaches a value proportional to the Zak phase during the free evolution of the system. Then we measure the Zak phase in a photonic quantum walk of twisted photons, by observing the mean chiral displacement in its bulk. Next, we measure the Zak phase in an alternative, inequivalent timeframe and combine the two windings to characterize the full phase diagram of this Floquet system. Finally, we prove th...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Topological insulators are fascinating states of matter exhibiting protected edge states and robust ...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Symmetries play a major role in identifying topological phases of matter and in establishing a direc...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
Emerged as the quantum counterpart of classical random walks, quantum walks are established precious...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...
The topology of one-dimensional chiral systems is captured by the winding number of the Hamiltonian ...