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20182021
most citedp-band engineering in artificial electronic lattices

47 citations · 47 across the 2 of their papers we have counts for

collaborators

8 papers

cond-mat.mes-hall2021

Spin-orbit gaps in the s and p orbital bands of an artificial honeycomb lattice

J. J. van den Broeke, I. Swart, C. Morais Smith +1

Muffin-tin methods have been instrumental in the design of honeycomb lattices that show, in contrast to graphene, separated s and in-plane p bands, a p orbital Dirac cone, and a p…

cond-mat.mtrl-sci2021

Electronic properties of atomically coherent square PbSe nanocrystal superlattice resolved by STS

Pierre Capiod, Maaike van der Sluijs, Jeroen de Boer +3

Rock-salt lead selenide nanocrystals can be used as building blocks for large scale square superlattices via two-dimensional assembly of nanocrystals at a liquid-air interface foll…

cond-mat.mes-hall2020

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…

cond-mat.mes-hall201947 cited

p-band engineering in artificial electronic lattices

M. R. Slot, S. N. Kempkes, E. J. Knol +7

Artificial electronic lattices, created atom by atom in a scanning tunneling microscope, have emerged as a highly tunable platform to realize and characterize the lowest-energy ban…

cond-mat.mes-hall2019

Edge-dependent topology in Kekulé lattices

S. E. Freeney, J. J. van den Broeke, A. J. J. Harsveld van der Veen +2

Topological states of matter are robust quantum phases, characterised by propagating or localised edge states in an insulating bulk. Topological boundary states can be triggered by…

cond-mat.mes-hall2019

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…