Trapped-Ion Quantum Computing
1,585 papers for year 2020
Trapped-Ion Quantum Computing Research Context
This Quantum Articles category organizes published quantum research papers so readers can browse focused work by topic, source, and year.
Showing 757-768 of 1,585
Many Body Thermodynamics on Quantum Computers via Partition Function Zeros
Akhil Francis, D. Zhu, C. Huerta Alderete, Sonika Johri, Xiao Xiao, J. K. Freericks, C. Monroe, N. M. Linke, A. F. Kemper
Many-body Hierarchy of Dissipative Timescales in a Quantum Computer
Oscar Emil Sommer, Francesco Piazza, David J. Luitz
Many-body physics in the NISQ era: quantum programming a discrete time crystal
Matteo Ippoliti, Kostyantyn Kechedzhi, Roderich Moessner, S. L. Sondhi, Vedika Khemani
Many-body quantum lock-in amplifier
Min Zhuang, Jiahao Huang, Chaohong Lee
Many-body quantum magic
Zi-Wen Liu, Andreas Winter
Materials Challenges for Trapped-Ion Quantum Computers
Kenneth R. Brown, John Chiaverini, Jeremy Sage, Hartmut Häffner
Maximal entropy approach for quantum state tomography
Rishabh Gupta, Rongxin Xia, Raphael D. Levine, Sabre Kais
Maximal power for heat engines: role of asymmetric interaction times
Pedro E. Harunari, Fernando S. Filho, Carlos E. Fiore, Alexandre Rosas
Maximising Dynamic Nuclear Polarisation via Selective Hyperfine Tuning
L. T. Hall, D. A. Broadway, A. Stacey, D. A. Simpson, J-P. Tetienne, L. C. L. Hollenberg
Maximum power heat engines and refrigerators in the fast-driving regime
Vasco Cavina, Paolo A. Erdman, Paolo Abiuso, Leonardo Tolomeo, Vittorio Giovannetti
Mean-squared-error-based adaptive estimation of pure quantum states and unitary transformations
A. Rojas, L. Pereira, S. Niklitschek, A. Delgado
Measurement Error Mitigation for Variational Quantum Algorithms
George S. Barron, Christopher J. Wood