Computational design of 2D quantum architectures assembling molecular spins on the surface

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Lecture
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Abstract

The realization of quantum processors demands the atomic-precision assembly of processing units in one or two dimensions. This lecture presents a computational perspective on the design of such architectures, linking fundamental physical insights to large-scale chemical engineering through three key pillars: the active role of the interface, the scalability of the single unit, and the chemical tunability of the interaction.

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Institutions
  • 1 University of Florence
Track
  • Lecture
Keywords
Molecular Magnets
Artificial Intelligence
Surface