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 15769-15780 of 19,132
Majorana box qubits
Stephan Plugge, Asbjørn Rasmussen, Reinhold Egger, Karsten Flensberg
Making Distinct Dynamical Systems Appear Spectrally Identical
Andre G. Campos, Denys I. Bondar, Renan Cabrera, Herschel Rabitz
Manipulation of quantum states in memory cell: controllable Mach-Zehnder interferometer
A. S. Losev, T. Yu. Golubeva, Yu. M. Golubev
Mapping the Chemical Potential Landscape of a Triple Quantum Dot
M. A. Broome, S. K. Gorman, J. G. Keizer, T. F. Watson, S. J. Hile, W. J. Baker, M. Y. Simmons
Measurable signatures of quantum mechanics in a classical spacetime
Bassam Helou, Jun Luo, Hsien-Chi Yeh, Cheng-gang Shao, B J. J. Slagmolen, David E. McClelland, Yanbei Chen
Measurement based quantum communication with resource states generated by entanglement purification
Julius Wallnöfer, Wolfgang Dür
Measurement of the excited-state transverse hyperfine coupling in NV centers via dynamic nuclear polarization
F. Poggiali, P. Cappellaro, N. Fabbri
Measurement-device-independent quantification of entanglement for given Hilbert space dimension
Koon Tong Goh, Jean-Daniel Bancal, Valerio Scarani
Measuring finite-range phase coherence in an optical lattice using Talbot interferometry
Bodhaditya Santra, Christian Baals, Ralf Labouvie, Aranya B. Bhattacherjee, Axel Pelster, Herwig Ott
Measuring out-of-time-order correlations and multiple quantum spectra in a trapped ion quantum magnet
Martin Gärttner, Justin G. Bohnet, Arghavan Safavi-Naini, Michael L. Wall, John J. Bollinger, Ana Maria Rey
Measuring out-of-time-order correlators on a nuclear magnetic resonance quantum simulator
Jun Li, Ruihua Fan, Hengyan Wang, Bingtian Ye, Bei Zeng, Hui Zhai, Xinhua Peng, Jiangfeng Du
Measuring quantum entanglement, machine learning and wave function tomography: Bridging theory and experiment with the quantum gas microscope
Norm M. Tubman