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 15481-15492 of 19,132
Anomalous spectral lines and relic quantum nonequilibrium
Nicolas G. Underwood, Antony Valentini
Antisymmetric Couplings Enable Direct Observation of Chirality in Nuclear Magnetic Resonance Spectroscopy
Jonathan P. King, Tobias F. Sjolander, John W. Blanchard
Application of a resource theory for magic states to fault-tolerant quantum computing
Mark Howard, Earl T. Campbell
Approach for modelling quantum-mechanical collapse
A. Yu. Ignatiev
Approximate energy states and thermal properties of a particle with position-dependent mass in external magnetic fields
Mahdi Eshghi, Hussein Mehraban, Sameer M. Ikhdair
Approximate Quantum Adders with Genetic Algorithms: An IBM Quantum Experience
Rui Li, Unai Alvarez-Rodriguez, Lucas Lamata, Enrique Solano
Arbitrarily Accurate Pulse Sequences for Robust Dynamical Decoupling
Genko T. Genov, Daniel Schraft, Nikolay V. Vitanov, Thomas Halfmann
Asynchronous Operations on Qubits in Distributed Simulation Environments using QooSim
J. Joel vanBrandwijk, Abhishek Parakh
Atom-Based Sensing of Weak Radio Frequency Electric Fields Using Homodyne Readout
Santosh Kumar, Haoquan Fan, Harald Kübler, Jiteng Sheng, James P. Shaffer
Atoms and Molecules in Cavities: From Weak to Strong Coupling in QED Chemistry
Johannes Flick, Michael Ruggenthaler, Heiko Appel, Angel Rubio
Autonomous quantum clocks: does thermodynamics limit our ability to measure time?
Paul Erker, Mark T. Mitchison, Ralph Silva, Mischa P. Woods, Nicolas Brunner, Marcus Huber
Autonomous Rotor Heat Engine
Alexandre Roulet, Stefan Nimmrichter, Juan Miguel Arrazola, Stella Seah, Valerio Scarani