A feasible path for the use of ferromagnetic josephson junctions in quantum circuits: The ferro-transmon

Author:

Massarotti D.12ORCID,Ahmad H. G.23ORCID,Satariano R.23ORCID,Ferraiuolo R.23ORCID,Di Palma L.3ORCID,Mastrovito P.3ORCID,Serpico G.3,Levochkina A.3,Caruso R.4ORCID,Miano A.3ORCID,Arzeo M.5ORCID,Ausanio G.3ORCID,Granata C.6ORCID,Lucignano P.3ORCID,Montemurro D.3ORCID,Parlato L.3ORCID,Vettoliere A.6ORCID,Fazio R.3ORCID,Mukhanov O.7ORCID,Pepe G. P.3ORCID,Tafuri F.3ORCID

Affiliation:

1. Dipartimento di Ingegneria Elettrica e delle Tecnologie dell’Informazione, Università degli Studi di Napoli Federico 1 II, Napoli I-80125, Italy

2. Consiglio Nazionale delle Ricerche — SPIN, c/o Complesso Monte Sant’Angelo, via Cinthia 2 , Napoli I-80126, Italy

3. Dipartimento di Fisica “Ettore Pancini”, Università degli Studi di Napoli Federico II, c/o Complesso Monte Sant’Angelo 3 , via Cinthia, Napoli I-80126, Italy

4. Brookhaven National Laboratory 4 , Upton, New York 11973-5000, USA

5. SEEQC-EU, Strada Vicinale Cupa Cinthia 5 , 21, Napoli I-80126, Italy

6. Consiglio Nazionale delle Ricerche — ISASI 6 , Via Campi Flegrei 34, Pozzuoli I-80078, Italy

7. Seeqc, inc. 7 , 150 Clearbrook Rd Suite 170, Elmsford, New York 10523, USA

Abstract

We discuss the capabilities of ferromagnetic (F) Josephson junctions (JJs) in a variety of layouts and configurations. The main goal is to demonstrate the potential of these hybrid JJs to disclose new physics and the possibility to integrate them in superconducting classical and quantum electronics for various applications. The feasible path towards the use of ferromagnetic Josephson junctions in quantum circuits starts from experiments demonstrating macroscopic quantum tunneling in NbN/GdN/NbN junctions with ferro-insulator barriers and with triplet components of the supercurrent, supported by a self-consistent electrodynamic characterization as a function of the barrier thickness. This has inspired further studies on tunnel ferromagnetic junctions with a different layout and promoted the first generation of ferromagnetic Al-based JJs, specifically Al/AlOx/Al/Py/Al. This layout takes advantage of the capability to integrate the ferromagnetic layer in the junction without affecting the quality of the superconducting electrodes and of the tunnel barrier. The high quality of the devices paves the way for the possible implementation of Al tunnel-ferromagnetic JJs in superconducting quantum circuits. These achievements have promoted the notion of a novel type of qubit incorporating ferromagnetic JJs. This qubit is based on a transmon design featuring a tunnel JJ in parallel with a ferromagnetic JJ inside a SQUID loop capacitively coupled to a superconducting readout resonator. The effect of an external RF field on the magnetic switching processes of ferromagnetic JJs has been also investigated.

Publisher

AIP Publishing

Subject

General Physics and Astronomy,Physics and Astronomy (miscellaneous)

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