activity
20182026
most citedDigital quantum magnetism on a trapped-ion quantum computer

8 citations · 17 across the 14 of their papers we have counts for

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20 papers · 1 filter

quant-ph2026

Large-scale NMR simulation on a trapped-ion quantum computer

Pascal Stadler, Alec Owens, Etienne Granet +2

Simulating nuclear magnetic resonance (NMR) spectra is a promising application of quantum simulation. Using Quantinuum's System Model H2, a trapped-ion quantum computer, we demonst…

quant-ph2026

Backpropagating Pauli Propagation

Sheng-Hsuan Lin, Etienne Granet, Kevin Hémery +1

We develop a backpropagation algorithm for evaluating parameter gradients in quantum circuits using Pauli propagation simulation. The method has computational complexity comparable…

quant-ph2026

Dynamical structure factor with a pumping approach on a trapped-ion quantum computer

Etienne Granet, Keisuke Murota, Henrik Dreyer +3

Dynamical structure factors (DSF) measured with neutron-scattering experiments provide key insights into the structure of materials. Their computation requires both the preparation…

quant-ph2026

Spectral functions on a quantum computer through system-environment interaction

Etienne Granet, Ramil Nigmatullin, David T. Stephen +1

Spectral functions measured with angle-resolved photoemission spectroscopy (ARPES) provide key insight to elucidate the band structure of materials. Comparison with theory requires…

quant-ph2025

Ground State Energy via Adiabatic Evolution and Phase Measurement for a Molecular Hamiltonian on an Ion-Trap Quantum Computer

Ludwig Nützel, Michael J. Hartmann, Henrik Dreyer +1

Estimating molecular ground-state energies is a central application of quantum computing, requiring both the preparation of accurate quantum states and efficient energy readout. Un…

quant-ph2025

Effect of slowly decaying long-range interactions on topological qubits

Etienne Granet, Michael Levin

We study the robustness of topological ground state degeneracy to long-range interactions in quantum many-body systems. We focus on slowly decaying two-body interactions that scale…