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Millisecond lifetimes and coherence times in 2D transmon qubits
Matthew P. Bland
, Faranak Bahrami
, Jeronimo G.C. Martinez
, Paal H. Prestegaard
, Basil M. Smitham
, Atharv Joshi
, Elizabeth Hedrick
, Shashwat Kumar
, Ambrose Yang
, Alexander C. Pakpour-Tabrizi
, Apoorv Jindal
, Ray D. Chang
, Guangming Cheng
,
Nan Yao
,
Robert J. Cava
,
Nathalie P. de Leon
, Andrew A. Houck
Chemistry
Princeton Materials Institute
Princeton Quantum Initiative
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
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Keyphrases
Qubit
100%
Transmon Qubit
100%
Coherence Time
100%
Tantalum
66%
Material Improvement
66%
Quantum Control
33%
Control Gate
33%
Decoherence
33%
Two-level System
33%
Superconducting Qubits
33%
Sapphire
33%
Wafer-scale
33%
Decoherence Effect
33%
Low Loss
33%
Base Layer
33%
Single-qubit Gates
33%
Quantum Processor
33%
Transmon
33%
Hahn Echo
33%
Josephson Junction
33%
High-resistivity Silicon (HR-Si)
33%
Simple Materials
33%
Substrate Loss
33%
On-Silicon
33%
Loss Reduction
33%
Bulk Substrate
33%
Engineering
Millisecond
100%
Qubit
100%
Coherence Time
100%
Q Factor
20%
Control Gate
20%
Single Qubit
20%
Base Layer
20%
Josephson Junction
20%
Qubit Gate
20%
Material Science
Silicon
100%
Tantalum
100%
Electrical Resistivity
50%
Josephson Junction
50%
Sapphire
50%
Surface (Surface Science)
50%
Physics
Quantum Dot
100%
Q Factor
16%
Quantum Control
16%
Josephson Junction
16%