Academic Journal
Q1Computer Physics Communications
About Computer Physics Communications
Computer Physics Communications is a scholarly journal published by Elsevier B.V.. SCImago 2025 lists it in Q1, with an SJR of 1.564 and H-index of 232.
Coverage: 1969-2026. Research categories: Hardware and Architecture (Q1); Physics and Astronomy (miscellaneous) (Q1).
Source-backed journal facts
Topics in published research
Advanced Chemical Physics Studies; Particle physics theoretical and experimental studies; Quantum Chromodynamics and Particle Interactions; Atomic and Molecular Physics; Theoretical and Computational Physics; Magnetic confinement fusion research.
OpenAlex classifies topics from published works. These topics are not the publisher’s official aims and scope.
Reported open-access list prices
4,160.00 USD; 3,890.00 EUR; 3,330.00 GBP; 515,960.00 JPY
APC list prices reported by OpenAlex, which obtains this information from DOAJ. Confirm current charges, taxes, waivers and eligibility with the publisher; this is not a fee quotation.
Source: OpenAlex source record. Retrieved 2026-10-03. Source record updated 2026-10-02. OpenAlex metrics are different from SCImago metrics and the Clarivate Journal Impact Factor.
Journal Metrics
Quartile, SJR and the listed SCImago H-index use the 2025 imported SCImago dataset. A quartile may vary by subject category. Values without a source or reporting year are unverified historical entries. Verify the current Journal Impact Factor with Clarivate or the publisher before using it.
Aims & Scope
The publisher’s official aims and scope have not yet been verified for this profile. Use the journal website to check subject fit and accepted article types before submitting.
Recent Research Articles
Latest publications matched automatically by ISSN.
MyTm: An automated melting temperature calculation toolkit
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Akshay Thakur, Matthew J. Zahr
2027-01 · DOI: 10.1016/j.cpc.2026.110419A parallel-in-time method based on the Parareal algorithm and high-order dynamic mode decomposition with applications to fluid simulations
Weifan Liu
2027-01 · DOI: 10.1016/j.cpc.2026.110416T-matrix scattering formalism for electron-beam spectroscopy
P. Elli Stamatopoulou, Ulrich Hohenester, Carsten Rockstuhl
2027-01 · DOI: 10.1016/j.cpc.2026.110421Efficient and robust temperature-based formulation for thermochemical nonequilibrium hypersonic flow simulations
Jayeon Joo, Chongam Kim, Hojun You
2027-01 · DOI: 10.1016/j.cpc.2026.110414A scattered-field formulation for coupled geometric wakefield and space charge field simulations in particle accelerators
J. Christ, E. Gjonaj, H. De Gersem
2027-01 · DOI: 10.1016/j.cpc.2026.110420A splitting algorithm for a zonal quasineutral Vlasov model of strongly magnetized plasmas
N. Schild, M. Räth, K. Hallatschek, K. Kormann et al.
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Rahul Halder, Giovanni Stabile, Gianluigi Rozza
2027-01 · DOI: 10.1016/j.cpc.2026.110424Construction of an efficient CFS-PML technique based on the vector-scalar potential formulation and its application in quantum-electromagnetic multiphysics simulations
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2027-01 · DOI: 10.1016/j.cpc.2026.110427AxolotE: Automated code generation for real solid harmonic Gaussian basis functions in the McMurchie–Davidson framework
Marcos Rivera-Almazo, Jorge Garza
2027-01 · DOI: 10.1016/j.cpc.2026.110429Dynamically training machine-learning-based force fields for strongly anharmonic materials
Martin Callsen, Tai-Ting Lee, Mei-Yin Chou
2027-01 · DOI: 10.1016/j.cpc.2026.110423Corrigendum to “Application of direct interpolation boundary element method to 2D elasticity with general body forces and thermoelastic effects” [Computer Physics Communications 326 (2026) 110238]
L.S. Campos, L.O.C. Lara, E.L. Albuquerque
2027-01 · DOI: 10.1016/j.cpc.2026.110428Maximum principle-preserving explicit method for the conservative Allen–Cahn equation
Youngjin Hwang, Junseok Kim
2027-01 · DOI: 10.1016/j.cpc.2026.110430Transferable neural network quantum state method for quantum chemistry
Yangjun Wu, Jiexuan Zhou, Yumeng Zhou, Zhuozhao Xia et al.
2027-01 · DOI: 10.1016/j.cpc.2026.110425exaPD: A highly parallelizable workflow for multi-element phase diagram (PD) construction
Feng Zhang, Zhuo Ye, Maxim Moraru, Ying Wai Li et al.
2026-12 · DOI: 10.1016/j.cpc.2026.110398NAVIS: A LAMMPS-Python framework for efficient computation of nanochannel velocity and thermal interfacial slip
Sleeba Varghese, Sobin Alosious, J.S. Hansen, B.D. Todd et al.
2026-12 · DOI: 10.1016/j.cpc.2026.110392Adaptive pseudoboson density matrix renormalization group for dilute 2D systems
F.J. Pauw, T. Köhler, U. Schollwöck, S. Paeckel et al.
2026-12 · DOI: 10.1016/j.cpc.2026.110410An implicit simplified unified gas-kinetic solver with hybrid X-space parallelization for multiscale nonequilibrium gas flows in OpenFOAM
Mengbo Zhu, Chengwen Zhong, Congshan Zhuo, Sha Liu et al.
2026-12 · DOI: 10.1016/j.cpc.2026.110387GPU-accelerated eigenmode solver for coaxial half-wave resonator cavities
Gopi Krishna, Puneet Jain, Asavari Dhavale
2026-12 · DOI: 10.1016/j.cpc.2026.110361Collocation – Genetic algorithm method for new quantized vortex solutions of the Gross-Pitaevskii equation in Bose-Einstein condensates
Rubina Nasir, Gul Haider, Noman Yousaf, Nasir M. Mirza et al.
2026-12 · DOI: 10.1016/j.cpc.2026.110388Reviews
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September 25, 2026 at 7:26 am
September 25, 2026