Field of Science:
Physical Sciences
Call 2
Host Instituion:
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Supervisor:
Ádám Gali
Connor Williamson
Interacting quantum defects at finite temperature: a coupling-to-control workflow for noise suppression, tunability and coherence
Short Description of the Research Project:
I will advance new methods to enable reliable modelling of the interacting units needed for quantum computers to function at finite temperature, providing the critical bridge between the computational discovery of isolated spin defects as qubits and the design of coherently-interacting spin defect arrays which are essential for realising a new generation of spin-based quantum technologies. The unique synergy between the pre-eminence of the Lendület research group in spin defect modelling, led by Professor Ádám Gali, and my expertise in developing many-body models and performing finite-temperature atomic simulations of optically-active materials, comprises the ideal partnership for the transformational advance in the design of quantum technologies.
