Twisted van der Waals materials have been shown to host a variety of tunable electronic structures. Here we put forward twisted trilayer graphene (TTG) as a platform to emulate heavy fermion physics. We demonstrate that TTG hosts extended and localized modes with an electronic structure that can be controlled by interlayer bias. In the presence of interactions, the existence of localized modes leads to the development of local moments, which are Kondo coupled to coexisting extended states. By electrically controlling the effective exchange between local moments, the system can be driven from a magnetic into a heavy fermion regime, passing through a quantum critical point, allowing one to electrically explore a generalized Doniach phase diag...
The behaviour of strongly correlated materials, and in particular unconventional superconductors, ha...
We investigate the many-body instabilities of electrons interacting near Van Hove singularities aris...
Atomically thin van der Waals materials stacked with an interlayer twist have proven to be an excell...
The exploration of physical extremes drives technological innovation. Recent decades have seen a pus...
Understanding and tuning correlated states is of great interest and significance to modern condensed...
Twisted graphene multilayers have been demonstrated to yield a versatile playground to engineer cont...
Near the magic angle, strong correlations drive many intriguing phases in twisted bilayer graphene (...
Thesis (Ph.D.)--University of Washington, 2022Moiré quantum materials, stacked 2D atomic layers wit...
We have used scanning tunneling microscopy and spectroscopy to resolve the spatial variation of the ...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
Two graphene monolayers twisted by a small magic angle exhibit nearly flat bands, leading to correla...
The advent of topological phases of matter revealed a variety of observed boundary phenomena, such a...
Electron-electron interactions play an important role in graphene and related systems and can induce...
Twisted bilayer graphene (tBLG) has recently emerged as a new platform for studying electroncorrelat...
Twisted bilayer graphene displays many fascinating properties that can be tuned by varying the relat...
The behaviour of strongly correlated materials, and in particular unconventional superconductors, ha...
We investigate the many-body instabilities of electrons interacting near Van Hove singularities aris...
Atomically thin van der Waals materials stacked with an interlayer twist have proven to be an excell...
The exploration of physical extremes drives technological innovation. Recent decades have seen a pus...
Understanding and tuning correlated states is of great interest and significance to modern condensed...
Twisted graphene multilayers have been demonstrated to yield a versatile playground to engineer cont...
Near the magic angle, strong correlations drive many intriguing phases in twisted bilayer graphene (...
Thesis (Ph.D.)--University of Washington, 2022Moiré quantum materials, stacked 2D atomic layers wit...
We have used scanning tunneling microscopy and spectroscopy to resolve the spatial variation of the ...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
Two graphene monolayers twisted by a small magic angle exhibit nearly flat bands, leading to correla...
The advent of topological phases of matter revealed a variety of observed boundary phenomena, such a...
Electron-electron interactions play an important role in graphene and related systems and can induce...
Twisted bilayer graphene (tBLG) has recently emerged as a new platform for studying electroncorrelat...
Twisted bilayer graphene displays many fascinating properties that can be tuned by varying the relat...
The behaviour of strongly correlated materials, and in particular unconventional superconductors, ha...
We investigate the many-body instabilities of electrons interacting near Van Hove singularities aris...
Atomically thin van der Waals materials stacked with an interlayer twist have proven to be an excell...