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 949-960 of 19,132
Exploring quantum annealing for coarse-grained protein folding.
Scheiber T, Heller M, Giebel A
Exploring quantum frontiers in protein structure prediction: techniques, challenges, and opportunities.
Selvaraj AA, Jayawant M, Kayalvizhi N, Krishnan M, Puvaneshvari N, Santhosh Kumar AW, Rameshkumar N
Exploring Spectral Singularities in Dirac Semimetals: The Role of Non-Hermitian Physics and Dichroism
Mustafa Sarisaman, Murat Taş, Enes Talha Kırca
Exploring the Boundaries of Modern Quantum Annealers with RNA Structure Prediction.
Andrews B, Abraham J, Fox D, Radja A
Exploring the feasibility of probabilistic and deterministic quantum gates between T centers in silicon
Shahrzad Taherizadegan, Faezeh Kimiaee Asadi, Jiawei Ji, Daniel Higginbottom, Christoph Simon
Exploring the landscape of compact magic-state distillation factories
Hugo Jacinto, Xavier Valcarce, Victor Barizien, Élie Gouzien, Nicolas Sangouard
Exponential quantum advantage in processing massive classical data
Haimeng Zhao, Alexander Zlokapa, Hartmut Neven, Ryan Babbush, John Preskill, Jarrod R. McClean, Hsin-Yuan Huang
Exponential Scaling Barriers for Variational Quantum Eigensolvers
Manuel Hagelueken, David A. Kreplin, Florian Wieland, Marco F. Huber, Marco Roth
Exponential speedup in measurement property learning with post-measurement states
Zhenhuan Liu, Qi Ye, Zhenyu Cai, Jens Eisert
Exponential speedups in fault-tolerant processing of quantum experiments
Ishaan Kannan, Harald Putterman, Jordan Cotler
Exponentially cheaper coherent phase estimation via uncontrolled unitaries
Mirko Amico
Exponentially-enhanced Weak-field Sensing with Quantum Stark Localization
Rozhin Yousefjani, Saif Al-Kuwari