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 1021-1032 of 1,585
Quadratic Clifford expansion for efficient benchmarking and initialization of variational quantum algorithms
Kosuke Mitarai, Yasunari Suzuki, Wataru Mizukami, Yuya O. Nakagawa, Keisuke Fujii
Quantifying and controlling entanglement in the quantum magnet Cs$_2$CoCl$_4$
Pontus Laurell, Allen Scheie, Chiron J. Mukherjee, Michael M. Koza, Mechtild Enderle, Zbigniew Tylczynski, Satoshi Okamoto, Radu Coldea, D. Alan Tennant, Gonzalo Alvarez
Quantifying Information Extraction using Generalized Quantum Measurements
Dominik Šafránek, Juzar Thingna
Quantifying the difference between many-body quantum states
Davide Girolami, Fabio Anzà
Quantifying the efficiency of state preparation via quantum variational eigensolvers
Gabriel Matos, Sonika Johri, Zlatko Papić
Quantitative Analysis of the Stochastic Approach to Quantum Tunneling
Mark P. Hertzberg, Fabrizio Rompineve, Neil Shah
Quantized classical response from spectral winding topology
Linhu Li, Sen Mu, Ching Hua Lee, Jiangbin Gong
Quantized dynamics in closed quantum systems
K. Ziegler
Quantum advantage for computations with limited space
Dmitri Maslov, Jin-Sung Kim, Sergey Bravyi, Theodore J. Yoder, Sarah Sheldon
Quantum advantage for differential equation analysis
Bobak T. Kiani, Giacomo De Palma, Dirk Englund, William Kaminsky, Milad Marvian, Seth Lloyd
Quantum Advantage with Timestamp Membosonsampling
Jun Gao, Xiao-Wei Wang, Wen-Hao Zhou, Zhi-Qiang Jiao, Ruo-Jing Ren, Yu-Xuan Fu, Lu-Feng Qiao, Xiao-Yun Xu, Chao-Ni Zhang, Xiao-Ling Pang, Hang Li, Yao Wang, Xian-Min Jin
Quantum algorithm for a chemical reaction path optimization by using a variational quantum algorithm and a reaction path generation
Shu Kanno