Internship and thesis proposals
A superconducting qubit with built-in protection against errors

Domaines
Condensed matter
Quantum Machines
Quantum information theory and quantum technologies

Type of internship
Expérimental et théorique
Description
Quantum processors correct their errors in software, at a cost of roughly a thousand physical qubits per useful logical one. A protected qubit works differently. Its two logical states are placed so far apart in phase space that no local noise can connect them. Errors are suppressed by the geometry of the circuit rather than corrected after the fact. We identified a new circuit that should solve the current roadblocks of previous attempts at making such a device. During the internship, you will measure and characterize the first version of that circuit. Moreover, we recently experimentally demonstrated that it is possible to remove any charge offset drift in superconducting circuits, which would greatly improve the coherence time of our qubit. You will also contribute to the development of a new fabrication recipe that stabilizes the charge offset deterministically.

Contact
Benjamin Huard
+33426731424


Email
Laboratory : laboratoire de physique, ENS de Lyon - umr 5672
Team : ENS de Lyon, Physique
Team Website
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