Trapped-Ion Quantum Computing
19,119 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 1129-1140 of 19,119
Generative modeling with Gaussian Boson Sampling: classically trainable Bosonic Born Machines
Zoltán Kolarovszki, Bence Bakó, Michał Oszmaniec, Changhun Oh, Zoltán Zimborás
Generative modelling powered by room-temperature polariton condensates
Yuan Wang, Marcin Muszynski, Avinash Dash, Rishabh Kaurav, Vinod M. Menon, Oleksandr Kyriienko
Genuine and Non-Genuine Quantum Non-Markovianity: A Unified Information-Theoretic Review
Rajeev Gangwar, Ujjwal Sen
Geo-ADAPT-VQE: Quantum Information Metric-Aware Circuit Optimization for Quantum Chemistry
Mohammad Aamir Sohail, Toshiaki Koike-Akino
Geometric complexity in thermodynamics
Tan Van Vu, Keiji Saito
Geometric Curvature Governs Work in Open Quantum Steady States
Eric R. Bittner
Geometric Phase Effect in Thermodynamic Properties and in the Imaginary-Time Multi-Electronic-State Path Integral Formulation.
Zhai Y, Shang Y, Liu J
Geometric phase-assisted simple phase compensation enabling quantum key distribution using phase-shifted Bell states
Ayan Kumar Nai, G. K. Samanta
Geometric phases of reduced states in the transverse-field Ising chain
Chiragkumar R. Vasani, Erik Sjöqvist
Geometric Quantum Physics Informed Neural Network
Wai-Hong Tam, Reza Safari, Hiromichi Matsuyama
Geometric Resilience of Quantum LiDAR in Turbulent Media: A Wasserstein Distance Approach
Arnaud Coatanhay, Angélique Drémeau
Getting large-scale quantum neural networks ready for quantum hardware
Mario Boneberg, Simon Kochsiek, Igor Lesanovsky