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 4621-4632 of 19,119

Sharp Transitions for Subsystem Complexity

Yale Fan, Nicholas Hunter-Jones, Andreas Karch, Shivan Mittal

2025 arXiv arXiv preprint

Sharp values for all dynamical variables via Anti-Wick quantization

Simon Friederich

2025 arXiv arXiv preprint

Shedding light on classical shadows: learning photonic quantum states

Hugo Thomas, Ulysse Chabaud, Pierre-Emmanuel Emeriau

2025 arXiv arXiv preprint

Shot and Architecture Adaptive Subspace Variational Quantum Eigensolver for Microwave Simulation

Zhixiu Han, Fanxu Meng, Weidong Li, Xutao Yu, Zaichen Zhang

2025 arXiv arXiv preprint

Shot-to-shot displacement noise in state-expansion protocols with inverted potentials

Giuseppe Paolo Seta, Louisiane Devaud, Lorenzo Dania, Lukas Novotny, Martin Frimmer

2025 arXiv arXiv preprint

Shuttling Compiler for Trapped-Ion Quantum Computers Based on Large Language Models

Fabian Kreppel, Reza Salkhordeh, Ferdinand Schmidt-Kaler, André Brinkmann

2025 arXiv arXiv preprint

Signatures of Topological Symmetries on a Noisy Quantum Simulator

Christopher Lamb, Robert M. Konik, Hubert Saleur, Ananda Roy

2025 arXiv arXiv preprint

Simplified Quantum Weight Reduction with Optimal Bounds

Min-Hsiu Hsieh, Xingjian Li, Ting-Chun Lin

2025 arXiv arXiv preprint

Simulated outperforms quantum reverse annealing in mean-field models

Christopher L. Baldwin

2025 arXiv arXiv preprint

Simulating Clifford Circuits with Gaussian Elimination

Yuchen Pang, Edgar Solomonik

2025 arXiv arXiv preprint

Simulating general noise nearly as cheaply as Pauli noise

Mark Myers, Mariesa H. Teo, Rajesh Mishra, Jing Hao Chai, Hui Khoon Ng

2025 arXiv arXiv preprint

Simulating high-accuracy nuclear motion Hamiltonians using discrete variable representation and Walsh-Hadamard QROM on fault-tolerant quantum computers

Michał Szczepanik, Ákos Nagy, Emil Żak

2025 arXiv arXiv preprint