Here, we demonstrate superconducting Dayem-bridge weak-links made of different stoichiometric compositions of NbRe. Our devices possess a relatively high critical temperature, normal-state resistance, and kinetic inductance. In particular, the high kinetic inductance makes this material a good alternative to more conventional niobium-based superconductors (e.g., NbN or NbTiN) for the realization of superinductors and high-quality factor resonators, whereas the high normal-state resistance yields a large output voltage in superconducting switches and logic elements realized upon this compound. Moreover, out-of-plane critical magnetic fields exceeding 2 T ensure that possible applications requiring high magnetic fields can also be envisaged. Altogether, these features make this material appealing for a number of applications in the framework of quantum technologies.

Demonstration of high-impedance superconducting NbRe Dayem bridges

Battisti S.
;
Paghi A.;Di Bernardo A.;De Simoni G.;Giazotto F.
2024

Abstract

Here, we demonstrate superconducting Dayem-bridge weak-links made of different stoichiometric compositions of NbRe. Our devices possess a relatively high critical temperature, normal-state resistance, and kinetic inductance. In particular, the high kinetic inductance makes this material a good alternative to more conventional niobium-based superconductors (e.g., NbN or NbTiN) for the realization of superinductors and high-quality factor resonators, whereas the high normal-state resistance yields a large output voltage in superconducting switches and logic elements realized upon this compound. Moreover, out-of-plane critical magnetic fields exceeding 2 T ensure that possible applications requiring high magnetic fields can also be envisaged. Altogether, these features make this material appealing for a number of applications in the framework of quantum technologies.
2024
Settore PHYS-03/A - Fisica sperimentale della materia e applicazioni
Inductance; Niobium compounds; Nitrogen compounds; Superconducting resonators; Titanium compounds; High critical temperature; High impedance; High quality factors; Kinetic inductances; Normal-state resistance; Output voltages; Stoichiometric compositions; Superconducting switches; Temperature normals; Weakest links; Magnetic fields
   Gate Tuneable Superconducting Quantum Electronics.
   SuperGate
   European Commission
   Horizon 2020 Framework Programme
   964398

   SuPErConducTing Radio-frequency switch for qUantuM technologies
   SPECTRUM
   European Commission
   Horizon Europe Framework Programme
   101057977

   National Quantum Science and Technology Institute
   MUR
   PNRR
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11384/158208
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