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researcher

J. Pedersen

4 papers hereh-index 27 citations6 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • middle author4

Across the 4 of 4 papers where every author was matched, so the position is known.

fields
  • quant-ph3
  • physics.plasm-ph1
same name
  • J. Pedersen — 10 papers, h 15
  • J. Pedersen — 7 papers, h 41
  • J. Pedersen — 6 papers, h 4
  • J. Pedersen — 5 papers, h 20
  • J. Pedersen — 3 papers, h 2
  • J. Pedersen — 2 papers, h 12

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

collaborators

4 papers

quant-ph2026

A Quantum-HPC Hybrid Workflow for Reaction-Center Electronic Dynamics: Application to a Cytochrome P450-Inspired Iron-Complex Model

Shintaro Maekawa, Takao Otsuka, Riku Masui +4

We introduce population-transfer dynamics as a practical validation observable for active-space-derived reduced Hamiltonians in multistate reaction-center chemistry. Using a cytoch…

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

Quantum-HPC hybrid computation of biomolecular excited-state energies

Kentaro Yamamoto, Riku Masui, Takahito Nakajima +16

We develop a workflow within the ONIOM framework and demonstrate it on the hybrid computing system consisting of the supercomputer Fugaku and the Quantinuum Reimei trapped-ion quan…

physics.plasm-ph2024

Quantum Calculation for Two-Stream Instability and Advection Test of Vlasov-Maxwell Equations: Numerical Evaluation of Hamiltonian Simulation

Hayato Higuchi, Juan W. Pedersen, Kiichiro Toyoizumi +3

The Vlasov-Maxwell equations provide kinetic simulations of collisionless plasmas, but numerically solving them on classical computers is often impractical. This is due to the comp…

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