The energy dispersion of fermions or bosons vanishes in momentum space if destructive quantum interference occurs in a frustrated Kagome lattice with only nearest-neighbor hopping. A discrete flat band (FB) without any dispersion is consequently formed, promising the emergence of fractional quantum Hall states at high temperatures. Here, we report the experimental realization of an FB with possible nontrivial topology in an electronic Kagome lattice on twisted multilayer silicene. Because of the unique low-buckled two-dimensional structure of silicene, a robust electronic Kagome lattice has been successfully induced by moiré patterns after twisting the silicene multilayers. The electrons are localized in the Kagome lattice because of quantu...
Motivated by recent advances in the realization of complex two-dimensional optical lattices, we inve...
Flat band systems are gaining popularity due to special properties. For instance, the strong correla...
Quantum simulators are essential tools for understanding complex quantum materials. Platforms based ...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
pre-printIt has long been noticed that special lattices contain single-electron at bands (FB) withou...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
Chirality, a fundamental structural property of crystals, can induce many unique topological quantum...
We present the appearance of nearly flat-band states with nonzero Chern numbers in a two-dimensional...
A large number of recent works point to the emergence of intriguing analogs of fractional quantum Ha...
Flat energy bands are suitable for observing the Fractional Quantum Hall Effect. We propose an optic...
Materials with flat bands are considered as ideal platforms to explore strongly correlated physics s...
Materials with flat bands are considered as ideal platforms to explore strongly correlated physics s...
Lattice models forming bands with higher Chern number offer an intriguing possibility for new phases...
Motivated by recent advances in the realization of complex two-dimensional optical lattices, we inve...
Motivated by recent advances in the realization of complex two-dimensional optical lattices, we inve...
Flat band systems are gaining popularity due to special properties. For instance, the strong correla...
Quantum simulators are essential tools for understanding complex quantum materials. Platforms based ...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
[[abstract]]The interplay of hopping parameters that can give rise to flat bands in consequence of q...
pre-printIt has long been noticed that special lattices contain single-electron at bands (FB) withou...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
Chirality, a fundamental structural property of crystals, can induce many unique topological quantum...
We present the appearance of nearly flat-band states with nonzero Chern numbers in a two-dimensional...
A large number of recent works point to the emergence of intriguing analogs of fractional quantum Ha...
Flat energy bands are suitable for observing the Fractional Quantum Hall Effect. We propose an optic...
Materials with flat bands are considered as ideal platforms to explore strongly correlated physics s...
Materials with flat bands are considered as ideal platforms to explore strongly correlated physics s...
Lattice models forming bands with higher Chern number offer an intriguing possibility for new phases...
Motivated by recent advances in the realization of complex two-dimensional optical lattices, we inve...
Motivated by recent advances in the realization of complex two-dimensional optical lattices, we inve...
Flat band systems are gaining popularity due to special properties. For instance, the strong correla...
Quantum simulators are essential tools for understanding complex quantum materials. Platforms based ...