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20152026
most citedElectronic dynamics created at conical intersections and its dephasing in aqueous solution

28 citations · 220 across the 40 of their papers we have counts for

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Showing 2024 · physics.chem-phShow all

5 papers · 2 filters

physics.chem-ph2024★ 4 cited

Self-consistent Quantum Linear Response with a Polarizable Embedding environment

Peter Reinholdt, Erik Rosendahl Kjellgren, Karl Michael Ziems +3

Quantum computing presents a promising avenue for solving complex problems, particularly in quantum chemistry, where it could accelerate the computation of molecular properties and…

physics.chem-ph2024★ 9 cited

Reduced density matrix formulation of quantum linear response

Theo Juncker von Buchwald, Karl Michael Ziems, Erik Rosendahl Kjellgren +3

The prediction of spectral properties via linear response (LR) theory is an important tool in quantum chemistry for understanding photo-induced processes in molecular systems. With…

physics.chem-ph2024★ 14 cited

Subspace methods for the simulation of molecular response properties on a quantum computer

Peter Reinholdt, Erik Rosendahl Kjellgren, Juliane Holst Fuglsbjerg +4

We explore Davidson methods for obtaining excitation energies and other linear response properties within quantum self-consistent linear response (q-sc-LR) theory. Davidson-type me…

physics.chem-ph2024★ 28 cited

Electronic dynamics created at conical intersections and its dephasing in aqueous solution

Yi-Ping Chang, Tadas Balciunas, Zhong Yin +8

A dynamical rearrangement in the electronic structure of a molecule can be driven by different phenomena, including nuclear motion, electronic coherence or electron correlation. Re…

physics.chem-ph2024

X-ray Absorption Spectra for Aqueous Ammonia and Ammonium: Quantum Mechanical versus Molecular Mechanical Embedding Schemes

Sarai Dery Folkestad, Alexander C. Paul, Regina Paul +4

The X-ray absorption (XA) spectra of aqueous ammonia and ammonium are computed using a combination of coupled cluster singles and doubles (CCSD) with different quantum mechanical a…