
Academic Journal
Q1Physical Review X
About Physical Review X
Physical Review X is a scholarly journal published by American Physical Society. SCImago 2025 places it in Q1 with an SJR of 6.494 and an H-index of 218.
Its listed coverage is 2011-2026 and its research categories include Physics and Astronomy (miscellaneous) (Q1). The 2025 dataset reports 310 documents and 10532 citations across the latest three-year reporting window.
About Physical Review X (PRX): A Premier Journal for Cutting-Edge Research
Physical Review X (PRX) is a highly regarded, open-access scientific journal published by the American Physical Society (APS). Launched in 2011, PRX has quickly risen to prominence as one of the most prestigious journals in the field of physics, offering a global platform for groundbreaking research across all areas of pure, applied, and interdisciplinary physics.
A Flagship Open-Access Journal
What sets Physical Review X apart is its open-access model. This means that all articles published in PRX are freely available to researchers, students, and the public worldwide. By removing paywalls, PRX supports the broader dissemination of scientific knowledge and helps accelerate innovation and discovery across disciplines.
Open-access publishing also enhances the visibility and impact of research. Articles published in PRX often receive widespread attention, high citation rates, and media coverage. This visibility benefits authors by maximizing the reach of their work and fostering cross-disciplinary collaborations.
Broad Scope and High Standards
PRX covers a wide range of topics in physics and related fields, including but not limited to:
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Quantum physics and quantum information
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Materials science and nanotechnology
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Condensed matter physics
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Particle physics and cosmology
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Optics and photonics
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Biological and soft matter physics
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Energy research and sustainability
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Computational physics and interdisciplinary applications
Despite its broad scope, PRX maintains exceptionally high editorial standards. The journal only accepts original research that is conceptually and technically advanced and of significant interest to the wider physics community.
Rigorous Peer Review and Editorial Excellence
Articles submitted to Physical Review X undergo a rigorous peer-review process led by expert editors and internationally recognized scientists. Each manuscript is evaluated based on its originality, scientific quality, technical soundness, and potential impact. This ensures that only the most innovative and meaningful work is published.
PRX’s editorial board includes leading physicists from around the world, contributing to the journal’s strong reputation for quality and integrity. The peer review process is transparent and thorough, reflecting the journal’s commitment to excellence.
Why Publish in Physical Review X?
Publishing in PRX offers several key advantages:
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High Impact Factor: PRX consistently ranks among the top journals in physics by impact factor, a testament to the significance and influence of the research it publishes.
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Wide Readership: As an open-access journal, PRX reaches a diverse, global audience across academia, industry, and government institutions.
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Prestige and Recognition: Authors gain visibility and recognition within the international scientific community.
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Support for Authors: PRX offers robust support throughout the submission, review, and publication process.
Journal Metrics
Metrics can change by reporting year. Verify time-sensitive values with the publisher or indexing service.
Aims & Scope
Understanding the Scope of Physical Review X (PRX): A Premier Open-Access Journal for Groundbreaking Research
Physical Review X (PRX) is one of the most prestigious, open-access journals published by the American Physical Society (APS). Since its inception, PRX has been dedicated to publishing original, high-impact research from all areas of physics. It is recognized globally as a platform for cutting-edge discoveries that significantly advance knowledge across the physical sciences.
Broad and Inclusive Scope
The scope of Physical Review X is exceptionally broad, covering the full spectrum of physics. It welcomes submissions from all subfields, including but not limited to:
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Condensed matter physics
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Atomic, molecular, and optical physics
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Quantum information
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High energy and nuclear physics
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Soft matter and biological physics
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Interdisciplinary and applied physics
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Materials science and engineering
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Computational and theoretical physics
PRX stands out for its commitment to publishing articles that are not only technically sound but also of exceptional importance and interest to a broad scientific audience. Its editorial standards emphasize novelty, significance, and clarity, ensuring that each published work has the potential to influence research across multiple disciplines.
High Standards and Rigorous Peer Review
One of the defining features of Physical Review X is its rigorous peer review process. Submissions undergo careful evaluation by expert referees who assess the quality, originality, and potential impact of the research. This ensures that only groundbreaking and scientifically sound studies are accepted for publication.
Moreover, the journal encourages authors to present their findings in a clear and accessible manner. PRX supports the inclusion of detailed supplementary materials and data, promoting transparency and reproducibility in research.
Emphasis on Innovation and Interdisciplinarity
PRX places a strong emphasis on research that bridges traditional boundaries within physics and extends into other scientific fields such as chemistry, biology, materials science, computer science, and engineering. The journal is especially interested in interdisciplinary work that can drive innovation and address real-world challenges.
By publishing articles that appeal to a wide scientific audience, PRX facilitates the cross-pollination of ideas across domains, fostering collaborations and inspiring new directions of research.
Global Accessibility and Impact
As an open-access journal, Physical Review X ensures that all its published content is freely available to readers worldwide. This accessibility maximizes the visibility and impact of the research, making it easier for scientists, educators, students, and policymakers to engage with the latest advancements in physics.
With a high impact factor and a growing reputation for excellence, PRX continues to attract submissions from leading researchers around the world. The journal serves as a vital platform for the dissemination of transformative scientific knowledge.
Recent Research Articles
Latest publications matched automatically by ISSN.
Topological Flowscape Reveals State Transitions in Nonreciprocal Living Matter
Hyunseok Lee, EliseAnne Koskelo, Shreyas Gokhale, Junang Li et al.
2026-09-08 · DOI: 10.1103/tq6h-f5wsNon-invertible bosonic chiral symmetry on the lattice
Anonymous
2026-09-08 · DOI: 10.1103/hl1d-99hvTopological phase transitions and their thermodynamic fate in Arbitrary- S classical pyrochlore spin ice
Anonymous
2026-09-08 · DOI: 10.1103/bkkq-q1v9Production and Decay Dynamics of the Charmed Baryon Λ c + in e + e − Annihilations near Threshold
M. Ablikim, M. N. Achasov, P. Adlarson, X. C. Ai et al.
2026-09-04 · DOI: 10.1103/5v2c-55m1Systematic magnetic structure generation based on oriented spin space groups: Formulation, applications, and high-throughput first-principles calculations
Anonymous
2026-09-03 · DOI: 10.1103/8n3w-h2t1Ultrastrong Unconventional Spin Current via Noncollinear Spin-Orbit Filtering
Hongliang Chen, Zi-An Wang, Xingguo Gao, Hang Zhou et al.
2026-09-03 · DOI: 10.1103/gzp7-1nvxSymmetry-guided prediction of magnetic-ordered ground states
Anonymous
2026-09-03 · DOI: 10.1103/8ftb-swx9Removing Nodal and Support-Mismatch Pathologies in Variational Monte Carlo via Blurred Sampling
Zhou-Quan Wan, Roeland Wiersema, Shiwei Zhang
2026-09-02 · DOI: 10.1103/jrn5-gv19Interaction-assisted topological pumping in few- and many-atom Rydberg arrays
Anonymous
2026-09-01 · DOI: 10.1103/bf85-ydvhEntanglement Certification Using Noncontextuality Inequalities
Yujie Zhang, Jonah Spodek, David Schmid, Carter Reid et al.
2026-09-01 · DOI: 10.1103/dxpr-wp6lLow-Depth Quantum Symmetrization
Zhenning Liu, Andrew M. Childs, Daniel Gottesman
2026-08-31 · DOI: 10.1103/9qhy-ms2yFlux-Floquet Instability in Fluctuating Superconductors
Marios H. Michael, Duilio De Santis, Eugene A. Demler, Patrick A. Lee et al.
2026-08-31 · DOI: 10.1103/tq9r-g727Ionization and dissociation energies of molecular hydrogen
Anonymous
2026-08-31 · DOI: 10.1103/42c4-pc1sObserving the Spatial and Temporal Evolution of Exciton Wave Functions in Organic Semiconductors
Marcel Theilen, Siegfried Kaidisch, Monja Stettner, Sarah Zajusch et al.
2026-08-28 · DOI: 10.1103/3zmg-276cQuantum Thermal State Preparation for Near-Term Quantum Processors
Jerome Lloyd, Dmitry A. Abanin
2026-08-28 · DOI: 10.1103/cbrd-ssnmSqueezing codes: Robust fluctuation-stabilized memories
Anonymous
2026-08-28 · DOI: 10.1103/dshf-7cv4Observation of Wannier-Rydberg and charge-transfer hybrid moire excitons under pressure
Anonymous
2026-08-28 · DOI: 10.1103/lgl7-ww2rFluidic hysterons and memory in flow networks
Anonymous
2026-08-27 · DOI: 10.1103/hh4n-pw7wElectric-field-induced x-ray nonreciprocal dichroism in hematite
Anonymous
2026-08-27 · DOI: 10.1103/p5ry-x2wrExperimentally Accessible Measurement of Irreversibility in Stochastic Systems by Categorizing Single-Molecule Displacements
Alvaro Lanza, Inés Martínez-Martín, Rafael Tapia-Rojo, Stefano Bo et al.
2026-08-26 · DOI: 10.1103/j3jk-k315Reviews
Community Reviews
Version History
April 20, 2025 at 6:07 am
April 20, 2025