Litcius/Paper detail

Quantum Optics Measurement Scheme for Quantum Geometry and Topological Invariants

Markus Lysne, Michael Schüler, Philipp Werner

2023Physical Review Letters15 citationsDOI

Abstract

We show how a quantum optical measurement scheme based on heterodyne detection can be used to explore geometrical and topological properties of condensed matter systems. Considering a 2D material placed in a cavity with a coupling to the environment, we compute correlation functions of the photons exiting the cavity and relate them to the hybrid light-matter state within the cavity. Different polarizations of the intracavity field give access to all components of the quantum geometric tensor on contours in the Brillouin zone defined by the transition energy. Combining recent results based on the metric-curvature correspondence with the measured quantum metric allows us to characterize the topological phase of the material. Moreover, in systems where S_{z} is a good quantum number, the procedure also allows us to extract the spin Chern number. As an interesting application, we consider a minimal model for twisted bilayer graphene at the magic angle, and discuss the feasibility of extracting the Euler number.

Topics & Concepts

PhysicsScheme (mathematics)Quantum mechanicsTopology (electrical circuits)QuantumQuantum geometryQuantum opticsQuantum imagingQuantum technologyGeometryOpen quantum systemTheoretical physicsQuantum operationMathematicsCombinatoricsMathematical analysisTopological Materials and PhenomenaGraphene research and applicationsMechanical and Optical Resonators