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 14017-14028 of 19,132
A steady state quantum classifier
Deniz Türkpençe, Tahir Çetin Akıncı, Serhat Şeker
A Tutorial on Formulating and Using QUBO Models
Fred Glover, Gary Kochenberger, Yu Du
A versatile quantum walk resonator with bright classical light
Bereneice Sephton, Angela Dudley, Gainluca Ruffato, Filippo Romanato, Lorenzo Marrucci, Miles Padgett, Sandeep Goyal, Filippus Roux, Thomas Konrad, Andrew Forbes
Ab initio few-mode theory for quantum potential scattering problems
Dominik Lentrodt, Jörg Evers
Absolute Single Ion Thermometry
Vincent Tugayé, Jean-Pierre Likforman, Samuel Guibal, Luca Guidoni
Accrediting outputs of noisy intermediate-scale quantum computing devices
Samuele Ferracin, Theodoros Kapourniotis, Animesh Datta
Accuracy and Resource Estimations for Quantum Chemistry on a Near-term Quantum Computer
Michael Kühn, Sebastian Zanker, Peter Deglmann, Michael Marthaler, Horst Weiß
Accurate detection of arbitrary photon statistics
Josef Hloušek, Michal Dudka, Ivo Straka, Miroslav Ježek
Active protection of a superconducting qubit with an interferometric Josephson isolator
Baleegh Abdo, Nicholas T. Bronn, Oblesh Jinka, Salvatore Olivadese, Antonio D. Corcoles, Vivekananda P. Adiga, Markus Brink, Russell E. Lake, Xian Wu, David P. Pappas, Jerry M. Chow
Adaptive Quantum State Tomography with Neural Networks
Yihui Quek, Stanislav Fort, Hui Khoon Ng
Adiabatic Fock state generation scheme using Kerr nonlinearity
Ryotatsu Yanagimoto, Edwin Ng, Tatsuhiro Onodera, Hideo Mabuchi
Adiabatic state distribution using anti-ferromagnetic spin systems
Koen Groenland