Quantum Simulation
1,223 papers for year 2024
Quantum Simulation Research Context
This category collects papers on quantum simulation methods for chemistry, materials, many-body systems, condensed matter, and physics models.
Showing 925-936 of 1,223
Reply to the comment on "High-Power Collective Charging of a Solid-State Quantum Battery" by Haowei Xu and Ju Li
D. Ferraro, M. Campisi, G. M. Andolina, V. Pellegrini, M. Polini
Residue Number System (RNS) based Distributed Quantum Addition
Bhaskar Gaur, Travis S. Humble, Himanshu Thapliyal
Resilience of the surface code to error bursts
Shi Jie Samuel Tan, Christopher A. Pattison, Matt McEwen, John Preskill
Resisting High-Energy Impact Events through Gap Engineering in Superconducting Qubit Arrays.
McEwen M, Miao KC, Atalaya J, Bilmes A, Crook A, Bovaird J, Kreikebaum JM, Zobrist N, Jeffrey E, Ying B, Bengtsson A, Chang HS, Dunsworth A, Kelly J, Zhang Y, Forati E, Acharya R, Iveland J, Liu W, Kim S, Burkett B, Megrant A, Chen Y, Neill C, Sank D, Devoret M, Opremcak A.
Resonances and collisional properties of neutron-rich helium isotopes in the adiabatic hyperspherical representation
Michael D. Higgins, Chris H. Greene
Resource-adaptive quantum flow algorithms for quantum simulations of many-body systems: sub-flow embedding procedures
Karol Kowalski, Nicholas P. Bauman
Resource-optimized fault-tolerant simulation of the Fermi-Hubbard model and high-temperature superconductor models
Angus Kan, Benjamin Symons
Resource-theoretic hierarchy of contextuality for general probabilistic theories
Lorenzo Catani, Thomas D. Galley, Tomáš Gonda
Revealing inadvertent periodic modulation of qubit frequency
Filip Wudarski, Yaxing Zhang, Juan Atalaya, M. I. Dykman
Review on 6G communication and its architecture, technologies included, challenges, security challenges and requirements, applications, with respect to AI domain
Pranita Bhide, Dhanush Shetty, Suresh Mikkili
Revisiting holographic codes with fractal-like boundary erasures
Abhik Bhattacharjee, Joydeep Naskar
Revisiting the Bohr Model of the Atom through Brownian Motion of the Electron
Vasil Yordanov