Physical patterning of high-Q superconducting niobium resonators via ion beam etching
Abstract
The development of superconducting quantum circuits increasingly involves the exploration of chemically distinct materials and complex multilayered structures. Accelerating this trend may benefit from low-damage, materials-agnostic patterning techniques that are compatible with a broad range of materials. Here, we investigate the utility of low-energy ion beam etching (IBE), a physical patterning technique, as an alternative to reactive ion etching for fabricating low-loss superconducting resonators. We use niobium (Nb) resonators as a test platform, leveraging their well-characterized performance metrics for benchmarking. To address IBE-induced surface redeposition, we introduce an in situ aluminum capping layer combined with targeted post-fabrication chemical treatment. This strategy yields resonators with internal quality factors as high as 6 × 105 in the single-photon regime at 50 mK. These results establish low-energy IBE as a promising patterning technique for superconducting devices, with the potential to accelerate development across chemically diverse and multilayered material platforms.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (12)
Miguel Manzo-Perez
Electrical and Computer Engineering, New York University 1 , Brooklyn, New York 11201,
Moeid Jamalzadeh
Electrical and Computer Engineering, New York University 1 , Brooklyn, New York 11201,
Man Nguyen
Booz Allen Hamilton 2 , McLean, Virginia 22012,
Christopher Nadeau
Booz Allen Hamilton 2 , McLean, Virginia 22012,
Alexander Madden
Booz Allen Hamilton 2 , McLean, Virginia 22012,
Iliya Shiravand
Electrical and Computer Engineering, New York University 1 , Brooklyn, New York 11201,
Kim Kisslinger
Xiao Tong
Center for Functional Nanomaterials
Kasra Sardashti
Department of Physics, University of Maryland 4 , College Park, Maryland 20740,
Michael Senatore
Air Force Research Laboratory, Information Directorate 5 , Rome, New York 13441,
Matthew LaHaye
Air Force Research Laboratory, Information Directorate 4 , Rome, New York 13441,
Davood Shahrjerdi
Electrical and Computer Engineering, New York University 1 , Brooklyn, New York 11201,