Proof-of-Concept Quantum Simulator Based on Molecular Spin Qudits

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  • Simone Chicco
  • Giuseppe Allodi
  • Alessandro Chiesa
  • Elena Garlatti
  • Christian D. Buch
  • Paolo Santini
  • Roberto De Renzi
  • Piligkos, Stergios
  • Stefano Carretta

The use of d-level qudits instead of two-level qubits can largely increase the power of quantum logic for many applications, ranging from quantum simulations to quantum error correction. Magnetic molecules are ideal spin systems to realize these large-dimensional qudits. Indeed, their Hamiltonian can be engineered to an unparalleled extent and can yield a spectrum with many low-energy states. In particular, in the past decade, intense theoretical, experimental, and synthesis efforts have been devoted to develop quantum simulators based on molecular qubits and qudits. However, this remarkable potential is practically unexpressed, because no quantum simulation has ever been experimentally demonstrated with these systems. Here, we show the first prototype quantum simulator based on an ensemble of molecular qudits and a radiofrequency broadband spectrometer. To demonstrate the operativity of the device, we have simulated quantum tunneling of the magnetization and the transverse-field Ising model, representative of two different classes of problems. These results represent an important step toward the actual use of molecular spin qudits in quantum technologies.

OriginalsprogEngelsk
TidsskriftJournal of the American Chemical Society
Vol/bind146
Udgave nummer1
Sider (fra-til)1053-1061
Antal sider9
ISSN0002-7863
DOI
StatusUdgivet - 2024

Bibliografisk note

Publisher Copyright:
© 2023 The Authors. Published by American Chemical Society.

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