Two level system loss in superconducting microwave resonators DP Pappas, MR Vissers, DS Wisbey, JS Kline, J Gao IEEE Transactions on Applied Superconductivity 21 (3), 871-874, 2011 | 203 | 2011 |
Low loss superconducting titanium nitride coplanar waveguide resonators MR Vissers, J Gao, DS Wisbey, DA Hite, CC Tsuei, AD Corcoles, ... Applied Physics Letters 97 (23), 2010 | 203 | 2010 |
A titanium-nitride near-infrared kinetic inductance photon-counting detector and its anomalous electrodynamics J Gao, MR Vissers, MO Sandberg, FCS Da Silva, SW Nam, DP Pappas, ... Applied Physics Letters 101 (14), 2012 | 115 | 2012 |
Etch induced microwave losses in titanium nitride superconducting resonators M Sandberg, MR Vissers, JS Kline, M Weides, J Gao, DS Wisbey, ... Applied Physics Letters 100 (26), 2012 | 115 | 2012 |
Effect of metal/substrate interfaces on radio-frequency loss in superconducting coplanar waveguides DS Wisbey, J Gao, MR Vissers, F da Silva, JS Kline, L Vale, DP Pappas Journal of Applied Physics 108 (9), 2010 | 105 | 2010 |
Proximity-coupled Ti/TiN multilayers for use in kinetic inductance detectors MR Vissers, J Gao, M Sandberg, SM Duff, DS Wisbey, KD Irwin, ... Applied Physics Letters 102 (23), 2013 | 84 | 2013 |
Low-loss superconducting devices ADC Gonzalez, J Gao, DA Hite, GA Keefe, DP Pappas, ME Rothwell, ... US Patent 8,954,125, 2015 | 71 | 2015 |
Coherence in a transmon qubit with epitaxial tunnel junctions MP Weides, JS Kline, MR Vissers, MO Sandberg, DS Wisbey, ... Applied Physics Letters 99 (26), 2011 | 66 | 2011 |
Characterization and in-situ monitoring of sub-stoichiometric adjustable superconducting critical temperature titanium nitride growth MR Vissers, J Gao, JS Kline, M Sandberg, MP Weides, DS Wisbey, ... Thin Solid Films 548, 485-488, 2013 | 46 | 2013 |
Reduced microwave loss in trenched superconducting coplanar waveguides MR Vissers, JS Kline, J Gao, DS Wisbey, DP Pappas Applied Physics Letters 100 (8), 2012 | 46 | 2012 |
Electronic structure and polymerization of a self-assembled monolayer with multiple arene rings DQ Feng, D Wisbey, YB Losovyj, Y Tai, M Zharnikov, PA Dowben Physical Review B—Condensed Matter and Materials Physics 74 (16), 165425, 2006 | 30 | 2006 |
The electronic band structure of CoS2 N Wu, YB Losovyj, D Wisbey, K Belashchenko, M Manno, L Wang, ... Journal of Physics: Condensed Matter 19 (15), 156224, 2007 | 28 | 2007 |
Lattice-stiffening transition in gadolinium chains on furrowed (112) surfaces YB Losovyj, IN Yakovkin, HK Jeong, D Wisbey, PA Dowben Journal of Physics: Condensed Matter 16 (26), 4711, 2004 | 21 | 2004 |
Sub-micrometer epitaxial Josephson junctions for quantum circuits JS Kline, MR Vissers, FCS da Silva, DS Wisbey, M Weides, TJ Weir, ... Superconductor Science and Technology 25 (2), 025005, 2011 | 18 | 2011 |
New method for determining the quality factor and resonance frequency of superconducting micro-resonators from sonnet simulations DS Wisbey, A Martin, A Reinisch, J Gao Journal of Low Temperature Physics 176, 538-544, 2014 | 17 | 2014 |
Nitrogen plasma passivated niobium resonators for superconducting quantum circuits K Zheng, D Kowsari, NJ Thobaben, X Du, X Song, S Ran, EA Henriksen, ... Applied Physics Letters 120 (10), 2022 | 13 | 2022 |
Fabrication and surface treatment of electron-beam evaporated niobium for low-loss coplanar waveguide resonators D Kowsari, K Zheng, JT Monroe, NJ Thobaben, X Du, PM Harrington, ... Applied Physics Letters 119 (13), 2021 | 13 | 2021 |
Abnormal temperature dependence of photoemission intensity mediated by thermally driven reorientation of a monomolecular film DQ Feng, D Wisbey, Y Tai, YB Losovyj, M Zharnikov, PA Dowben The Journal of Physical Chemistry B 110 (3), 1095-1098, 2006 | 13 | 2006 |
The structure of the CoS2 (100)-(1× 1) surface ZX Yu, MA Van Hove, SY Tong, D Wisbey, YB Losovyj, N Wu, M Manno, ... Journal of Physics: Condensed Matter 19 (15), 156223, 2007 | 12 | 2007 |
Dielectric loss of boron-based dielectrics on niobium resonators DS Wisbey, MR Vissers, J Gao, JS Kline, MO Sandberg, MP Weides, ... Journal of Low Temperature Physics 195, 474-486, 2019 | 10 | 2019 |