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 17665-17676 of 19,132
Echo of the Quantum Bounce
Luis J. Garay, Mercedes Martin-Benito, Eduardo Martin-Martinez
Edge-state instabilities of bosons in a topological band
Ryan Barnett
Effect of high frequency modes of medium on an open quantum system
Nirupam Dutta, A. K. Chaudhuri, P. K. Panigrahi
Effective magnetic fields for photons in waveguide and coupled resonator lattices
Stefano Longhi
Effects of the continuous spontaneous localization model in the regime of large localization length scale
Daniel Bedingham
Efficient and accurate surface hopping for long time nonadiabatic quantum dynamics
Aaron Kelly, Thomas E. Markland
Efficient detection of a highly bright photon source using superconducting nanowire single photon detectors
Rui-Bo Jin, Mikio Fujiwara, Taro Yamashita, Shigehito Miki, Hirotaka Terai, Zhen Wang, Kentaro Wakui, Ryosuke Shimizu, Masahide Sasaki
Efficient experimental validation of photonic boson sampling against the uniform distribution
N. Spagnolo, C. Vitelli, M. Bentivegna, D. J. Brod, A. Crespi, F. Flamini, S. Giacomini, G. Milani, R. Ramponi, P. Mataloni, R. Osellame, E. F. Galvao, F. Sciarrino
Efficient Quantum Algorithms for Analyzing Large Sparse Electrical Networks
Guoming Wang
Efficient synthesis of quantum gates on indirectly coupled spins
Haidong Yuan, Daxiu Wei, Yajuan Zhang, Steffen Glaser, Navin Khaneja
Electrically and mechanically tunable electron spins in silicon carbide color centers
Abram L. Falk, Paul V. Klimov, Bob B. Buckley, Viktor Ivády, Igor A. Abrikosov, Greg Calusine, William F. Koehl, Ádám Gali, David D. Awschalom
Electrically driven spin resonance in silicon carbide color centers
P. V. Klimov, A. L. Falk, B. B. Buckley, D. D. Awschalom