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 1417-1428 of 19,132
Learning Quantum Operator Dynamics from Short-Time Data
Jinyang Li, Satoshi Iso, Shunji Matsuura, Lingxiao Wang, Xiaoyang Wang
Learning Quantum-Samplers for Stochastic Processes with Quantum Sequence Models
Ximing Wang, Chengran Yang, Chidambaram Aditya Somasundaram, Jayne Thompson, Mile Gu
Learning shape resonances from the stabilization method
Daniel Kromm, Hans-Werner Hammer, Artem Volosniev
Learning to detect optical nonclassicality
Martina Jung, Suchitra Krishnaswamy, Timon Schapeler, Annabelle Bohrdt, Tim J. Bartley, Jan Sperling, Martin Gärttner
Learning unified control of internal spin squeezing in atomic qudits for magnetometry
C. Z. Cao, J. Z. Han, M. Xiong, M. Deng, L. Wang, X. Lv, M. Xue
Learning with Active Quantum Subspaces: Scalable Hybrid Advantage without Full Quantum Data-Encoding
Jeongho Bang, Wooyeong Song, Kyoungho Cho, Taewan Kim, Yongsoo Hwang
Leptonic CP Phase Determination from Fisher Information in NO$ν$A and T2K
Neetu Raj Singh Chundawat, Luis A. Delgadillo, Yu-Feng Li
Leveraging Landau-Zener-Stückelberg interference for accelerating diabatic quantum annealing
Matthias Werner, Matías Jonsson, Artur García-Sáez, Arnau Riera, Tameem Albash
Leveraging quantum-inspired explainable AI for PD diagnosis: A QIEAI-QKNN approach
Sudipta Roy, Subrat Kumar Nayak, Debahuti Mishra
Levitated Ferromagnetic Torsional Oscillators for High-Precision Magnetometry and Probing Exotic Interactions
Ren Yichong, Wu Lielie, Broer Wijnand, Xue Fei, Huang Pu, Du JiangFeng
LFaB: Low Fidelity as Bias for Active Learning in the Chemical Configuration Space.
Vinod V, Zaspel P
Lie Algebra-Based Quantum Optimal Controls Interpolation
Piero Luchi, Francesco Pederiva