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quant-ph2025

Quantum simulation of actinide chemistry: towards scalable algorithms on trapped ion quantum computers

Kesha Sorathia, Cono Di Paola, Gabriel Greene-Diniz +9

Due to the wide range of technical applications of actinide elements, a thorough understanding of their electronic structure could complement technological improvements in many dif…

quant-ph2025

Resource-Efficient Simulations of Particle Scattering on a Digital Quantum Computer

Yahui Chai, Joe Gibbs, Vincent R. Pascuzzi +4

We develop and demonstrate methods for simulating the scattering of particle wave packets in the interacting Thirring model on digital quantum computers, with hardware implementati…

quant-ph2025

Deep Circuit Compression for Quantum Dynamics via Tensor Networks

Joe Gibbs, Lukasz Cincio

Dynamic quantum simulation is a leading application for achieving quantum advantage. However, high circuit depths remain a limiting factor on near-term quantum hardware. We present…

quant-ph2025

Learning Circuits with Infinite Tensor Networks

Joe Gibbs, Lukasz Cincio

Hamiltonian simulation on quantum computers is strongly constrained by gate counts, motivating techniques to reduce circuit depths. While tensor networks are natural competitors to…

quant-ph2024

Exploiting symmetries in nuclear Hamiltonians for ground state preparation

Joe Gibbs, Zoë Holmes, Paul Stevenson

The Lipkin and Agassi models are simplified nuclear models that provide natural test beds for quantum simulation methods. Prior work has investigated the suitability of the Variati…