Experimental realization and characterization of an electronic Lieb lattice

Publication date

2017-07

Authors

Slot, M. R.ISNI 0000000507443178
Gardenier, Thomas S.ISNI 0000000492612310
Jacobse, P.H.ISNI 0000000493302429
Miert, Guido vanISNI 0000000527843574
Kempkes, S. N.ISNI 0000000523925097
Zevenhuizen, S. J. M.ISNI 0000000391459812
de Morais Smith, CristianeISNI 0000000394433837
Vanmaekelbergh, DanielISNI 0000000394482321
Swart, IngmarORCID 0000-0003-3201-7301ISNI 0000000390199991

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of materials. Some specific geometries give rise to novel and potentially useful electronic bands. For example, a honeycomb lattice leads to Dirac-type bands where the charge carriers behave as massless particles [1]. Theoretical predictions are triggering the exploration of novel 2D geometries [2-10], such as graphynes, Kagomé and the Lieb lattice. The latter is the 2D analogue of the 3D lattice exhibited by perovskites [2]; it is a square-depleted lattice, which is characterised by a band structure featuring Dirac cones intersected by a flat band. Whereas photonic and cold-atom Lieb lattices have been demonstrated [11-17], an electronic equivalent in 2D is difficult to realize in an existing material. Here, we report an electronic Lieb lattice formed by the surface state electrons of Cu(111) confined by an array of CO molecules positioned with a scanning tunneling microscope (STM). Using scanning tunneling microscopy, spectroscopy and wave-function mapping, we confirm the predicted characteristic electronic structure of the Lieb lattice. The experimental findings are corroborated by muffin-tin and tight-binding calculations. At higher energies, second-order electronic patterns are observed, which are equivalent to a super-Lieb lattice.

Keywords

Electronic properties and materials, Surface patterning, Two-dimensional materials, Taverne

Citation

Slot, M R, Gardenier, T S, Jacobse, P H, van Miert, G C P, Kempkes, S N, Zevenhuizen, S J M, de Morais Smith, C, Vanmaekelbergh, D & Swart, I 2017, 'Experimental realization and characterization of an electronic Lieb lattice', Nature Physics, vol. 13, no. 7, pp. 672-676. https://doi.org/10.1038/nphys4105