Internship and thesis proposals
Quantum simulation of anyons

Domaines
Condensed matter
Low dimension physics
Topological materials, Quantum Transport, Cavity Quantum Electrodynamics
Quantum gases

Type of internship
Expérimental
Description
We propose an internship to implement quantum simulation scenarios with ultra-cold dipolar excitons, confined in nanoscopic electrostatic lattices. This semiconductor platform has shown a high level of performance. It relies on electron-hole pairs that are optically injected in a double quantum well, where gate electrodes imprint electrostatic lattices confining excitons. Here, a route is introduced to realize anyonic excitations in the lattice. Anyons are strikingly marked by a fractional quantum statistics. They are theoretically accessible to dynamically varying lattices of dipolar excitons. following so-called Floquet engineering.

Contact
Francois Dubin
0664581279


Email
Laboratory : CRHEA - UPR10
Team : CRHEA - Quantic
Team Website
/ Thesis :    Funding :