Trapped-Ion Quantum Computing
19,132 papers
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 16237-16248 of 19,132
Characterisation of an exchange-based two-qubit gate for resonant exchange qubits
Matthew P. Wardrop, Andrew C. Doherty
Characterization of decohering quantum systems: Machine learning approach
Markku P. V. Stenberg, Oliver Köhn, Frank K. Wilhelm
Characterizing a Four-Qubit Planar Lattice for Arbitrary Error Detection
Jerry M. Chow, Srikanth J. Srinivasan, Easwar Magesan, A D. Corcoles, David W. Abraham, Jay M. Gambetta, Matthias Steffen
Chip-based Quantum Key Distribution
Philip Sibson, Chris Erven, Mark Godfrey, Shigehito Miki, Taro Yamashita, Mikio Fujiwara, Masahide Sasaki, Hirotaka Terai, Michael G. Tanner, Chandra M. Natarajan, Robert H. Hadfield, Jeremy L. O'Brien, Mark G. Thompson
Circuit design implementing longitudinal coupling: a scalable scheme for superconducting qubits
Susanne Richer, David DiVincenzo
Circumventing Heisenberg's uncertainty principle in atom interferometry tests of the equivalence principle
Albert Roura
Classical Computation by Quantum Bits
B. Antonio, J. Randall, W. K. Hensinger, G. W. Morley, S. Bose
Classical Dynamical Gauge Fields in Optomechanics
Stefan Walter, Florian Marquardt
Classical-quantum limits
Todd A. Oliynyk
Classicality of a quantum oscillator
Aida Ahmadzadegan, Robert B. Mann, Daniel R. Terno
Closed hierarchies and non-equilibirum steady states of driven systems
Israel Klich
Closing a quantum feedback loop inside a cryostat: Autonomous state preparation and long-time memory of a superconducting qubit
Christian Kraglund Andersen, Joseph Kerckhoff, Konrad W. Lehnert, Benjamin J. Chapman, Klaus Mølmer