Trapped-Ion Quantum Computing
1,585 papers for year 2020
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 1153-1164 of 1,585
Quantum simulations employing connected moments expansions
Karol Kowalski, Bo Peng
Quantum simulations of light-matter interactions in arbitrary coupling regimes
L. Lamata
Quantum simulations of molecular systems with intrinsic atomic orbitals
Stefano Barison, Davide Emilio Galli, Mario Motta
Quantum Size Effects in the Magnetic Susceptibility of a Metallic Nanoparticle
M. Roda-Llordes, C. Gonzalez-Ballestero, A. E. Rubio López, M. J. Martínez-Pérez, F. Luis, O. Romero-Isart
Quantum Software Engineering: Landscapes and Horizons
Jianjun Zhao
Quantum speed limit time for topological qubit influenced by fermionic and bosonic environment
Soroush Haseli, Hazhir Dolatkhah, Shahriar Salimi
Quantum Speedup of Monte Carlo Integration with respect to the Number of Dimensions and its Application to Finance
Kazuya Kaneko, Koichi Miyamoto, Naoyuki Takeda, Kazuyoshi Yoshino
Quantum speedups for convex dynamic programming
David Sutter, Giacomo Nannicini, Tobias Sutter, Stefan Woerner
Quantum Spike Neural Network
Yanhu Chen, Hongxiang Guo, Cen Wang, Xiong Gao, Jian Wu
Quantum State Complexity in Computationally Tractable Quantum Circuits
Jason Iaconis
Quantum state preparation of spin eigenstates including the Dicke states with generalized all-coupled interaction in a spintronic quantum computing architecture
Amritesh Sharma, Ashwin A. Tulapurkar
Quantum State Readout, Collapses, Probes and Signals
Adrian Kent