Quantum Simulation
13,277 papers
Quantum Simulation Research Context
This category collects papers on quantum simulation methods for chemistry, materials, many-body systems, condensed matter, and physics models.
Showing 6253-6264 of 13,277
Effective Field Theories and Finite-temperature Properties of Zero-dimensional Superradiant Quantum Phase Transitions
Zi-Yong Ge, Heng Fan, Franco Nori
Effective Quantum Field Theory Methods for Calculating Feynman Integrals
Anatoly V. Kotikov
Effective-medium approach to the resonance distribution of wave scattering in a random point field
David Gaspard, Jean-Marc Sparenberg
Efficient Classical Shadow Tomography through Many-body Localization Dynamics
Tian-Gang Zhou, Pengfei Zhang
Efficient Large-Scale Many-Body Quantum Dynamics via Local-Information Time Evolution
Claudia Artiaco, Christoph Fleckenstein, David Aceituno Chávez, Thomas Klein Kvorning, Jens H. Bardarson
Efficient Learning of Long-Range and Equivariant Quantum Systems
Štěpán Šmíd, Roberto Bondesan
Efficient Long-Range Entanglement using Dynamic Circuits
Elisa Bäumer, Vinay Tripathi, Derek S. Wang, Patrick Rall, Edward H. Chen, Swarnadeep Majumder, Alireza Seif, Zlatko K. Minev
Efficient Mean-Field Simulation of Quantum Circuits Inspired by Density Functional Theory.
Bernardi M.
Efficient percolation simulations for lossy photonic fusion networks
Matthias C. Löbl, Stefano Paesani, Anders S. Sørensen
Efficient preparation of the AKLT State with Measurement-based Imaginary Time Evolution
Tianqi Chen, Tim Byrnes
Efficient Quantum Circuit Simulation by Tensor Network Methods on Modern GPUs
Feng Pan, Hanfeng Gu, Lvlin Kuang, Bing Liu, Pan Zhang
Efficient quantum recurrent reinforcement learning via quantum reservoir computing
Samuel Yen-Chi Chen