Fundamental Physics at the Frontier of Noisy Quantum Computation
quant-ph, hep-lat, hep-ph, nucl-th
Submitted: 2026-09-23
Updated: 2026-09-23
Terminology
Sources
- Digital quantum simulations of scattering in quantum field theories using W states
- The Quantum Complexity of String Breaking in the Schwinger Model
- Digitization of Scalar Fields for Quantum Computing
- Best Approximate Quantum Compiling Problems
- Approximating many-body quantum states with quantum circuits and measurements
- Aquila: QuEra's 256-qubit neutral-atom quantum computer
- Polynomial-Time Algorithms for Prime Factorization and Discrete Logarithms on a Quantum Computer
- Elucidating Reaction Mechanisms on Quantum Computers
- Quantum computational chemistry
- Quantum Simulation for High Energy Physics
- Establishing a New Benchmark in Quantum Computational Advantage with 105-qubit Zuchongzhi 3.0 Processor
- Quantum error correction below the surface code threshold
- Logical quantum processor based on reconfigurable atom arrays
- A tweezer array with 6100 highly coherent atomic qubits
- Supplementary information for "Quantum supremacy using a programmable superconducting processor"
- Efficient tensor network simulation of IBM's Eagle kicked Ising experiment
- Solving the sampling problem of the Sycamore quantum circuits
- Quantum Simulating Nature's Fundamental Fields
- Simulating quantum field theory with a quantum computer
- Quantum Computing in the NISQ era and beyond
Related papers
- Reconquering Bell sampling on qudits: stabilizer learning and testing, quantum pseudorandomness bounds, and more
- Encrypted clones can leak: Classification of informative subsets in Quantum Encrypted Cloning
- Polynomial-time classical and quantum simulation of quantum impurity models
- Theory of quantum-enhanced interferometry with general Markovian light sources
- A convergent hierarchy of spectral gap certificates for qubit Hamiltonians
- Universal Bound and Phase Transition in Many-Body Fermionic Non-Gaussianity