activity
20172025
most citedThe nature of three-body interactions in DFT: exchange and polarization effects

21 citations · 32 across the 6 of their papers we have counts for

collaborators
Showing physics.chem-phShow all

7 papers · 1 filter

physics.chem-ph2025

Correcting basis set incompleteness in wave function correlation energy by dressing electronic Hamiltonian with an effective short-range interaction

Michał Hapka, Aleksandra Tucholska, Marcin Modrzejewski +3

We propose a general approach to reducing basis set incompleteness error in electron correlation energy calculations. The correction is computed alongside the correlation energy in…

physics.chem-ph202411 cited

Assessment of random-phase approximation and second order Møller-Plesset perturbation theory for many-body interactions in solid ethane, ethylene, and acetylene

Khanh Ngoc Pham, Marcin Modrzejewski, Jiří Klimeš

The relative energies of different phases or polymorphs of molecular solids can be small, less than a kiloJoule/mol. Reliable description of such energy differences requires high q…

physics.chem-ph2023

Efficient calculation of dispersion energy for multireference systems with Cholesky decomposition. Application to excited-state interactions

Michał Hapka, Agnieszka Krzemińska, Marcin Modrzejewski +2

We propose an algorithm, that scales with the fifth power of the system size, for computing the second-order dispersion energy for monomers described with multiconfigurational wave…

physics.chem-ph2023

F-12 density matrices and cumulants from the explicitly connected coupled-cluster theory

Aleksandra M. Tucholska, Marcin Modrzejewski, Robert Moszynski

We present the expansion to the expectation value coupled cluster theory (XCC) to the wavefunctions that include the inter electronic distances explicitly. We have extende…

physics.chem-ph2020

Random-Phase Approximation in Many-Body Noncovalent Systems: Methane in a Dodecahedral Water Cage

Marcin Modrzejewski, Sirous Yourdkhani, Szymon Śmiga +1

The many-body expansion (MBE) of energies of molecular clusters or solids offers a way to detect and analyze errors of theoretical methods that could go unnoticed if only the total…

physics.chem-ph2019

Random Phase Approximation Applied to Many-Body Noncovalent Systems

Marcin Modrzejewski, Sirous Yourdkhani, Jiri Klimes

The random phase approximation (RPA) has received a considerable interest in the field of modeling systems where noncovalent interactions are important. Its advantages over widely…