Strongly correlated electron–photon systems
An important goal of modern condensed-matter physics involves the search for states of
matter with emergent properties and desirable functionalities. Although the tools for material …
matter with emergent properties and desirable functionalities. Although the tools for material …
Colloquium: Nonthermal pathways to ultrafast control in quantum materials
Recent progress in utilizing ultrafast light-matter interaction to control the macroscopic
properties of quantum materials is reviewed. Particular emphasis is placed on photoinduced …
properties of quantum materials is reviewed. Particular emphasis is placed on photoinduced …
Light-induced emergent phenomena in 2D materials and topological materials
Light–matter interaction in 2D and topological materials provides a fascinating control knob
for inducing emergent, non-equilibrium properties and achieving new functionalities in the …
for inducing emergent, non-equilibrium properties and achieving new functionalities in the …
Ultrafast dynamics of electrons and phonons: from the two-temperature model to the time-dependent Boltzmann equation
The advent of pump-probe spectroscopy techniques paved the way to the exploration of
ultrafast dynamics of electrons and phonons in crystalline solids. Following photo-absorption …
ultrafast dynamics of electrons and phonons in crystalline solids. Following photo-absorption …
Light-matter coupling and quantum geometry in moiré materials
Quantum geometry has been identified as an important ingredient for the physics of
quantum materials and especially of flat-band systems, such as moiré materials. On the …
quantum materials and especially of flat-band systems, such as moiré materials. On the …
Through the Lens of a Momentum Microscope: Viewing Light‐Induced Quantum Phenomena in 2D Materials
Van der Waals (vdW) materials at their 2D limit are diverse, flexible, and unique laboratories
to study fundamental quantum phenomena and their future applications. Their novel …
to study fundamental quantum phenomena and their future applications. Their novel …
Optically induced flat bands in twisted bilayer graphene
Twisted bilayer graphene at the magic twist angle features flat energy bands, which lead to
superconductivity and strong correlation physics. These unique properties are typically …
superconductivity and strong correlation physics. These unique properties are typically …
Quantum degenerate fermi gas in an orbital optical lattice
Spin-polarized samples and spin mixtures of quantum degenerate fermionic atoms are
prepared in selected excited Bloch bands of an optical checkerboard square lattice. For the …
prepared in selected excited Bloch bands of an optical checkerboard square lattice. For the …
Prethermalization and thermalization in periodically driven many-body systems away from the high-frequency limit
C Fleckenstein, M Bukov - Physical Review B, 2021 - APS
We investigate a class of periodically driven many-body systems that allows us to extend the
phenomenon of prethermalization to the vicinity of isolated intermediate-to-low drive …
phenomenon of prethermalization to the vicinity of isolated intermediate-to-low drive …
Disentangling the competing mechanisms of light-induced anomalous Hall conductivity in three-dimensional Dirac semimetal
We experimentally elucidate the origin of the anomalous Hall conductivity in a three-
dimensional Dirac semimetal, Cd 3 As 2, driven by circularly polarized light. Using time …
dimensional Dirac semimetal, Cd 3 As 2, driven by circularly polarized light. Using time …