Reducing two-level systems dissipations in 3D superconducting niobium resonators by atomic layer deposition and high temperature heat treatment

Author:

Kalboussi Y.1ORCID,Delatte B.1,Bira S.23,Dembele K.45,Li X.6ORCID,Miserque F.7,Brun N.6ORCID,Walls M.6,Maurice J. L.5ORCID,Dragoe D.8,Leroy J.9ORCID,Longuevergne D.3ORCID,Gentils A.3ORCID,Jublot-Leclerc S.3ORCID,Jullien G.1,Eozenou F.1ORCID,Baudrier M.1,Maurice L.1,Proslier T.1ORCID

Affiliation:

1. Département des Accélérateurs, de la Cryogénie et du Magnétisme, Université Paris-Saclay, CEA 1 , 91191 Gif-sur-Yvette, France

2. Thomas Jefferson National Accelerator Facility 2 , Newport News, Virginia 23606, USA

3. Université Paris-Saclay, CNRS/IN2P3, IJCLab 3 , 91405 Orsay, France

4. Centre Interdisciplinaire de Microscopie Électronique, Ecole Polytechnique 5 , 91120 Palaiseau, France

5. Laboratoire de Physique des Interfaces et Couches Minces, École Polytechnique, CNRS UMR7647 6 , 91120 Palaiseau, France

6. Laboratoire de Physique des Solides, Université Paris-Saclay, CNRS 7 , 91405 Orsay, France

7. Service de Recherche sur la Corrosion et le Comportement des Matériaux, Université Paris-Saclay 8 , 91191 Gif sur Yvette, France

8. Institut de Chimie Moléculaire et des Matériaux d'Orsay, Université Paris-Saclay 9 , 91400 Orsay, France

9. Université Paris-Saclay, CEA, CNRS, NIMBE, LICSEN 4 , 91191 Gif-sur-Yvette, France

Abstract

Superconducting qubits have arisen as a leading technology platform for quantum computing, which is on the verge of revolutionizing the world's calculation capacities. Nonetheless, the fabrication of computationally reliable qubit circuits requires increasing the quantum coherence lifetimes, which are predominantly limited by the dissipations of two-level system defects present in the thin superconducting film and the adjacent dielectric regions. In this paper, we demonstrate the reduction of two-level system losses in three-dimensional superconducting radio frequency niobium resonators by atomic layer deposition of a 10 nm aluminum oxide Al2O3 thin films, followed by a high vacuum heat treatment at 650 °C for few hours. By probing the effect of several heat treatments on Al2O3-coated niobium samples by x-ray photoelectron spectroscopy plus scanning and conventional high resolution transmission electron microscopy coupled with electron energy loss spectroscopy and energy dispersive spectroscopy, we witness a dissolution of niobium native oxides and the modification of the Al2O3-Nb interface, which correlates with the enhancement of the quality factor at low fields of two 1.3 GHz niobium cavities coated with 10 nm of Al2O3.

Publisher

AIP Publishing

Reference30 articles.

1. Seamless high-q microwave cavities for multimode circuit quantum electrodynamics;Phys. Rev. Lett.,2021

2. M. S. Alam , S.Belomestnykh, N.Bornman, G.Cancelo, Y.-C.Chao, M.Checchin, V. S.Dinh, A.Grassellino, E. J.Gustafson, R.Harnik, “ Quantum computing hardware for hep algorithms and sensing,” arXiv:2204.08605 (2022).

3. A. Berlin , S.Belomestnykh, D.Blas, D.Frolov, A. J.Brady, C.Braggio, M.Carena, R.Cervantes, M.Checchin, C.Contreras-Martinez, “ Searches for new particles, dark matter, and gravitational waves with SRF cavities,” arXiv:2203.12714 (2022).

4. Three-dimensional superconducting resonators at T< 20 mK with photon lifetimes up to τ= 2 s;Phys. Rev. Appl.,2020

5. Towards understanding two-level-systems in amorphous solids: Insights from quantum circuits;Rep. Prog. Phys.,2019

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