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 73-84 of 19,132
A quantum mechanical analysis of the coherence de Broglie wavelength for superresolution and enhanced sensitivity in a coupled interferometer scheme
B. S. Ham
A Quantum Multi-Programming Framework to Maximize Quantum Resources for the LUCJ Ansatz
Milana Bazayeva, Abigail McClain Gomez, Kenneth M. Merz
A Quantum Spectral Framework for Solving PDEs
Chih-Kang Huang, Giacomo Antonioli, Frédéric Barbaresco
A Realistic Framework for Quantum Sensing under Finite Resources
Zdeněk Hradil, Jaroslav Řeháček
A reason why we do not observe Schrödinger's cats
Fabio Siringo
A Refined Biorthogonal Framework for Non-Hermitian Quantum Theory and Its Application in Dynamical Phase Transition
Fei Wang, Guoying Liang, Zecheng Zhao, Bao-Ming Xu
A review of design principles and fabrication techniques in superconducting and trapped ion quantum devices.
Pandharpatte AS, Singh M, Saxena A
A Review of Variational Quantum Algorithms: Insights into Fault-Tolerant Quantum Computing
Zhirao Wang, Junxiang Huang, Runyu Ye, Qingyu Li, Qi-Ming Ding, Yiming Huang, Ting Zhang, Yumeng Zeng, Jianshuo Gao, Xiao Yuan, Yuan Yao
A rigorous hybridization of variational quantum eigensolver and classical neural network
Minwoo Kim, Kyoung Keun Park, Kyungmin Lee, Jeongho Bang, Taehyun Kim
A robust laser cavity platform for NV-diamond singlet infrared absorption magnetometry
Shao Qi Lim, Alexander A. Wood, Brett C. Johnson, Qiang Sun, Jan Jeske, Hiroshi Abe, Takeshi Ohshima, David J. Ottaway, Heike Ebendorff-Heidepriem, Robert E. Scholten, Andrew D. Greentree, Brant C. Gibson
A robust method to reach the motional quantum regime of (anti-)protons in cryogenic multi-Penning traps
Nikita Poljakov, Jan Schaper, Julia-Aileen Coenders, Philipp Luca Hoffmann, Juan Manuel Cornejo, Klemens Hammerer, Stefan Ulmer, Christian Ospelkaus
A scalable and quantum-accurate foundation model for biomolecular force fields via linearly tensorized quadrangle attention.
Su Q, Zhu K, Gou Q, Zhang J, Hu R, Li Y, Wang Y, Zhang H, You Z, Jiang L, Kang Y, Wang J, Hsieh CY, Hou T