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 15001-15012 of 19,132
High-fidelity adiabatic quantum computation using the intrinsic Hamiltonian of a spin system: Application to the experimental factorization of 291311
Zhaokai Li, Nikesh S. Dattani, Xi Chen, Xiaomei Liu, Hengyan Wang, Richard Tanburn, Hongwei Chen, Xinhua Peng, Jiangfeng Du
High-fidelity quantum gates in Si/SiGe double quantum dots
Maximilian Russ, D. M. Zajac, A. J. Sigillito, F. Borjans, J. M. Taylor, J. R. Petta, Guido Burkard
High-fidelity state transfer through long-range correlated disordered quantum channels
Guilherme M. A. Almeida, Francisco A. B. F. de Moura, Marcelo L. Lyra
High-harmonic generation in solids with and without topological edge states
Dieter Bauer, Kenneth K. Hansen
High-power collective charging of a solid-state quantum battery
Dario Ferraro, Michele Campisi, Gian Marcello Andolina, Vittorio Pellegrini, Marco Polini
High-speed and high-performance polarization-based quantum key distribution system without side channel effects caused by multiple lasers
Heasin Ko, Byung-Seok Choi, Joong-Seon Choe, Kap-Joong Kim, Jong-Hoi Kim, Chun Ju Youn
High-speed quantum transducer with a single-photon emitter in a 2D resonator
Xingyu Gao, Zhang-qi Yin, Tongcang Li
High-threshold fault-tolerant quantum computation with analog quantum error correction
Kosuke Fukui, Akihisa Tomita, Atsushi Okamoto, Keisuke Fujii
Highly-Efficient Quantum Memory for Polarization Qubits in a Spatially-Multiplexed Cold Atomic Ensemble
P. Vernaz-Gris, K. Huang, M. Cao, A. S. Sheremet, J. Laurat
Holonomic Surface Codes for Fault-Tolerant Quantum Computation
Jiang Zhang, Simon J. Devitt, J. Q. You, Franco Nori
How to Suppress Dark States in Quantum Networks and Bio-Engineered Structures
T. P. Le, Ludovica Donati, Simone Severini, Filippo Caruso
Hybrid quantum repeater based on resonant qubit-field interactions
J. Z. BernĂ¡d