9 citations · 9 across the 1 of their papers we have counts for
4 papers
p Orbital flat band and Dirac cone in the electronic honeycomb lattice
Thomas S. Gardenier, Jette J. van den Broeke, Jesper R. Moes +5
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to new and potentially useful quantum electronic phases. So far, p orbital bands were only realized…
Robust zero-energy modes in an electronic higher-order topological insulator: the dimerized Kagome lattice
S. N. Kempkes, M. R. Slot, J. J. van den Broeke +6
Quantum simulators are an essential tool for understanding complex quantum materials. Platforms based on ultracold atoms in optical lattices and photonic devices led the field so f…
Critical Behavior of Topological Kondo Insulators
J. J. van den Broeke, S. N. Kempkes, A. Quelle +1
A thermodynamic study of the Kondo insulator SmB is pursued to elucidate the well-known anomalous low-temperature electronic-like specific heat contribution conjectured to aris…
Phase and vacancy behaviour of hard "slanted" cubes
Robin van Damme, Berend van der Meer, Jette Janine van den Broeke +2
We use computer simulations to study the phase behaviour for hard, right rhombic prisms as a function of the angle of their rhombic face (the "slant" angle). More specifically, usi…