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 17629-17640 of 19,132
Data Structures in Classical and Quantum Computing
Maximilian Fillinger
Decay dynamics and exciton localization in large GaAs quantum dots grown by droplet epitaxy
Petru Tighineanu, Raphaël Daveau, Eun Hye Lee, Jin Dong Song, Søren Stobbe, Peter Lodahl
Decoding non-Abelian topological quantum memories
James R. Wootton, Jan Burri, Sofyan Iblisdir, Daniel Loss
Decoherence enhanced quantum measurement of a quantum dot spin qubit
Katarzyna Roszak, Łukasz Marcinowski, Paweł Machnikowski
Demonstrating an element of measurement-based quantum error correction
Stefanie Barz, Rui Vasconcelos, Chiara Greganti, Michael Zwerger, Wolfgang Dür, Hans J. Briegel, Philip Walther
Density-Functional theory, finite-temperature classical maps, and their implications for foundational studies of quantum systems
M. W. C. Dharma-wardana
Dephasing in coherent communication with weak signal states
Marcin Jarzyna, Konrad Banaszek, Rafal Demkowicz-Dobrzanski
Detecting quantum non-Gaussianity of noisy Schrödinger cat states
Mattia L. Palma, Jimmy Stammers, Marco G. Genoni, Tommaso Tufarelli, Stefano Olivares, M. S. Kim, Matteo G. A. Paris
Detecting Topological Phases in Cold Atoms
Xiong-Jun Liu, K. T. Law, T. K. Ng, Patrick A. Lee
Detection of a single fundamental charge with nanoscale resolution in ambient conditions using the NV$^-$ center in diamond
Florian Dolde, Marcus W. Doherty, Julia Michl, Ingmar Jakobi, Boris Naydenov, Sebastien Pezzagna, Jan Meijer, Philipp Neumann, Fedor Jelezko, Neil B. Manson, Jörg Wrachtrup
Detection, spectroscopy and state preparation of a single praseodymium ion in a crystal
Tobias Utikal, Emanuel Eichhammer, Lutz Petersen, Alois Renn, Stephan Götzinger, Vahid Sandoghdar
Device-independent quantum key distribution based on measurement inputs
Ramij Rahaman, Matthew G. Parker, Piotr Mironowicz, Marcin Pawłowski