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Dielectric loss is known to limit state-of-the-art superconducting qubit lifetimes.
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Numerical linear algebra
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Coherent control of macroscopic quantum states in a single-cooper-pair box
Y Nakamura, YA Pashkin, and JS Tsai · 1999
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Complex permittivity of some ultralow loss dielectric crystals at cryogenic temperatures
J Krupka, K Derzakowski, ME Tobar, J Hartnett, and RG Geyer · 1999
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Use of whispering-gallery modes for complex permittivity determinations of ultra-low-loss dielectric materials
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A peek into the history of sapphire crystal growth
DC Harris · 2003
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Decoherence of a superconducting qubit due to bias noise
JM Martinis, SW Nam, J Aumentado, KM Lang, and C Urbina · 2003
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Charge-insensitive qubit design derived from the cooper pair box
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The physics of superconducting microwave resonators
J Gao · 2008
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Fluxonium: Single cooper-pair circuit free of charge offsets
VE Manucharyan, J Koch, LI Glazman, and MH Devoret · 2009
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Improving the coherence time of superconducting coplanar resonators
H Wang, M Hofheinz, J Wenner, M Ansmann, RC Bialczak, M Lenander, E Lucero, M Neeley, AD O’Connell, D Sank, et al · 2009
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Observation of high coherence in josephson junction qubits measured in a three-dimensional circuit qed architecture
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Surface loss simulations of superconducting coplanar waveguide resonators
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High q-factor sapphire whispering gallery mode microwave resonator at single photon energies and millikelvin temperatures
DL Creedon, Y Reshitnyk, W Farr, JM Martinis, TL Duty, and ME Tobar · 2011
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Quantum memory with millisecond coherence in circuit qed
MJ Reagor, W Pfaff, CJ Axline, RW Heeres, N Ofek, KM Sliwa, ET Holland, C Wang, JZ Blumoff, K Chou, et al · 2016
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An architecture for integrating planar and 3d cqed devices
CJ Axline, MJ Reagor, R Heeres, PC Reinhold, C Wang, K Shain, W Pfaff, Y Chu, L Frunzio, and RJ Schoelkopf · 2016
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Characterization and reduction of capacitive loss induced by sub-micron josephson junction fabrication in superconducting qubits
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Analysis and mitigation of interface losses in trenched superconducting coplanar waveguide resonators
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Building Blocks for Modular Circuit QED Quantum Computing
CJ Axline · 2018
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Superconducting microresonators: Physics and applications
J Zmuidzinas · 2012
Cited alongside, same era.
Reaching 10 ms single photon lifetimes for superconducting aluminum cavities
MJ Reagor, H Paik, G Catelani, L Sun, CJ Axline, ET Holland, IM Pop, NA Masluk, T Brecht, L Frunzio, et al · 2013
Cited alongside, same era.
Hybrid electron spin resonance and whispering gallery mode resonance spectroscopy of fe 3+ in sapphire
K Benmessai, WG Farr, DL Creedon, Y Reshitnyk, J-M Le Floch, T Duty, and ME Tobar · 2013
Cited alongside, same era.
Ultrasensitive microwave spectroscopy of paramagnetic impurities in sapphire crystals at millikelvin temperatures
WG Farr, DL Creedon, M Goryachev, K Benmessai, and ME Tobar · 2013
Cited alongside, same era.
Characterization and reduction of microfabrication-induced decoherence in superconducting quantum circuits
CM Quintana, A Megrant, Z Chen, A Dunsworth, B Chiaro, R Barends, B Campbell, Y Chen, IC Hoi, E Jeffrey, et al · 2014
Cited alongside, same era.
Spin-photon interaction in a cavity with time-reversal symmetry breaking
M Goryachev, WG Farr, DL Creedon, and ME Tobar · 2014
Cited alongside, same era.
Surface participation and dielectric loss in superconducting qubits
C Wang, CJ Axline, YY Gao, T Brecht, Y Chu, L Frunzio, MH Devoret, and RJ Schoelkopf · 2015
Cited alongside, same era.
Determining interface dielectric losses in superconducting coplanar-waveguide resonators
W Woods, G Calusine, AJ Melville, A Sevi, E Golden, DK Kim, D Rosenberg, JL Yoder, and WD Oliver · 2019
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Towards understanding two-level-systems in amorphous solids: insights from quantum circuits
C Müller, JH Cole, and J Lisenfeld · 2019
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Direct dispersive monitoring of charge parity in offset-charge-sensitive transmons
K Serniak, S Diamond, M Hays, V Fatemi, S Shankar, L Frunzio, RJ Schoelkopf, and MH Devoret · 2019
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Materials loss measurements using superconducting microwave resonators
CRH McRae, H Wang, J Gao, MR Vissers, T Brecht, A Dunsworth, DP Pappas, and J Mutus · 2020
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Dielectric loss extraction for superconducting microwave resonators
CRH McRae, RE Lake, JL Long, M Bal, X Wu, B Jugdersuren, TH Metcalf, X Liu, and DP Pappas · 2020
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Three-dimensional superconducting resonators at T < 20 mK \textit{T}~<~20~\text{mK} with photon lifetimes up to τ \tau = 2 s
A Romanenko, R Pilipenko, S Zorzetti, D Frolov, M Awida, S Belomestnykh, S Posen, and A Grassellino · 2020
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High coherence superconducting microwave cavities with indium bump bonding
CU Lei, L Krayzman, S Ganjam, L Frunzio, and RJ Schoelkopf · 2020
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New material platform for superconducting transmon qubits with coherence times exceeding 0.3 milliseconds
APM Place, LVH Rodgers, P Mundada, BM Smitham, M Fitzpatrick, Z Leng, A Premkumar, J Bryon, A Vrajitoarea, S Sussman, et al · 2021
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Millisecond coherence in a superconducting qubit
A Somoroff, Q Ficheux, RA Mencia, H Xiong, RV Kuzmin, and VE Manucharyan · 2021
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Towards practical quantum computers: Transmon qubit with a lifetime approaching 0.5 milliseconds
C Wang, X Li, H Xu, Z Li, J Wang, Z Yang, Z Mi, X Liang, T Su, C Yang, et al · 2022
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Environmental radiation impact on lifetimes and quasiparticle tunneling rates of fixed-frequency transmon qubits
RT Gordon, CE Murray, C Kurter, M Sandberg, SA Hall, K Balakrishnan, R Shelby, B Wacaser, AA Stabile, JW Sleight, et al · 2022
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Measurement of the low-temperature loss tangent of high-resistivity silicon using a high- q q superconducting resonator
M Checchin, D Frolov, A Lunin, A Grassellino, and A Romanenko · 2022
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