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 18889-18900 of 19,132
Group velocity control in the ultraviolet domain via interacting dark-state resonances
M. Mahmoudi, M. Sahrai, J. Evers
H2 Double Ionization with Few-Cycle Laser Pulses
Sébastien Saugout, Eric Charron, Christian Cornaggia
Heat Transport in Quantum Spin Chains: Stochastic Baths vs Quantum Trajectories
Carlos Mejia-Monasterio, Hannu Wichterich
High fidelity all-optical control of quantum dot spins: detailed study of the adiabatic approach
Erik M. Gauger, Simon C. Benjamin, Ahsan Nazir, Brendon W. Lovett
High precision quantum control of single donor spins in silicon
Rajib Rahman, Cameron J. Wellard, Forrest R. Bradbury, Marta Prada, Jared H. Cole, Gerhard Klimeck, Lloyd C. L. Hollenberg
High-fidelity ion-trap quantum computing with hyperfine clock states
L. Aolita, K. Kim, J. Benhelm, C. F. Roos, H. Häffner
High-fidelity, adaptive qubit measurements through repetitive information transfer
D. B. Hume, T. Rosenband, D. J. Wineland
Implementation of three-qubit Grover search in cavity QED
W. L. Yang, C. Y. Chen, M. Feng
Implementing controlled-NOT gate based on free spin qubits with semiconductor quantum-dot array
Yin-Zhong Wu, Wei-Min Zhang
Implementing universal quantum gates in coupled cavities
Dimitris G. Angelakis, Alastair Kay
Improving Intrinsic Decoherence in Multi-Quantum-Dot Charge Qubits
Martina Hentschel, Diego C. B. Valente, Eduardo R. Mucciolo, Harold U. Baranger
Independent Noise Approximation for Spin-Boson Decoherence
Man-Hong Yung