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Adsorbate-Induced Modification of the Confining Barriers in a Quantum Box Array.

Sylwia NowakowskaFederico MazzolaMariza N AlbertiFei SongTobias VoigtJan NowakowskiAneliia WäckerlinChristian WäckerlinJérôme WissW Bernd SchweizerMax BroszioCraig M PolleyMats LeanderssonShadi FatayerToni IvasMilos BaljozovicS Fatemeh MousaviAisha AhsanThomas NijsOlha PopovaJun ZhangMatthias MuntwilerCarlo ThilgenMeike StöhrIgor A PastiNatalia V SkorodumovaFrançois DiederichJustin W WellsThomas A Jung
Published in: ACS nano (2018)
Quantum devices depend on addressable elements, which can be modified separately and in their mutual interaction. Self-assembly at surfaces, for example, formation of a porous (metal-) organic network, provides an ideal way to manufacture arrays of identical quantum boxes, arising in this case from the confinement of the electronic (Shockley) surface state within the pores. We show that the electronic quantum box state as well as the interbox coupling can be modified locally to a varying extent by a selective choice of adsorbates, here C60, interacting with the barrier. In view of the wealth of differently acting adsorbates, this approach allows for engineering quantum states in on-surface network architectures.
Keyphrases
  • molecular dynamics
  • energy transfer
  • monte carlo
  • high resolution
  • high throughput
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