
Academic Journal
Q1Applied Physics Reviews
About Applied Physics Reviews
Applied Physics Reviews is a scholarly journal published by American Institute of Physics. SCImago 2025 places it in Q1 with an SJR of 2.54 and an H-index of 132.
Its listed coverage is 2014-2026 and its research categories include Physics and Astronomy (miscellaneous) (Q1). The 2025 dataset reports 239 documents and 5509 citations across the latest three-year reporting window.
Applied Physics Reviews is a prestigious peer-reviewed journal published by the American Institute of Physics (AIP). Known for its high-impact content, the journal serves as a crucial platform for scientists, engineers, and researchers in the fields of applied physics and related interdisciplinary domains. Whether you are a student, academic professional, or industry researcher, Applied Physics Reviews offers deep insights into the current trends, technologies, and theoretical advancements shaping modern physics.
What is Applied Physics Reviews?
Applied Physics Reviews (APR) is dedicated to publishing comprehensive review articles that provide authoritative insights and critical evaluations of the latest research in applied physics. The journal focuses on broad topics that include but are not limited to:
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Nanotechnology
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Photonics
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Semiconductors
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Materials science
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Quantum mechanics
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Renewable energy technologies
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Plasma physics
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Sensors and instrumentation
Its mission is to bridge the gap between fundamental research and practical application, highlighting innovations that influence technology development and industrial applications.
Why is Applied Physics Reviews Important?
The field of applied physics is constantly evolving, with new discoveries driving advancements in healthcare, energy, electronics, and space exploration. Applied Physics Reviews acts as a gateway for researchers to stay updated with these developments. The journal’s content is highly curated, ensuring that each article not only meets rigorous scientific standards but also contributes valuable knowledge to the global physics community.
The review articles published in APR are written by leading experts and often serve as foundational references for future research. These in-depth reviews help readers understand complex topics, evaluate research trends, and identify emerging technologies that have the potential to transform industries.
Key Features of the Journal
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High Impact Factor: APR is ranked among the top journals in the physics category, making it a highly respected source of information.
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Global Reach: As part of the AIP Publishing portfolio, the journal is accessible to researchers around the world.
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Interdisciplinary Focus: APR encourages cross-disciplinary collaboration, drawing interest from physicists, engineers, chemists, and biologists.
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Rigorous Peer Review: Articles undergo a strict peer-review process to ensure scientific accuracy, relevance, and originality.
Who Should Read Applied Physics Reviews?
Applied Physics Reviews is ideal for:
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Academic researchers seeking the latest developments in applied physics
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Graduate students looking for authoritative sources for thesis or dissertation writing
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Industry professionals interested in technology trends and innovations
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Policy-makers and educators needing scientific insights to support academic curricula or research funding decisions
Journal Metrics
Metrics can change by reporting year. Verify time-sensitive values with the publisher or indexing service.
Aims & Scope
Applied Physics Reviews is a highly respected, peer-reviewed scientific journal published by AIP Publishing. This journal plays a vital role in bridging the gap between cutting-edge physics research and practical applications in real-world technologies. It is dedicated to providing in-depth review articles that highlight significant advancements, current trends, and future directions across all areas of applied physics.
Broad and Multidisciplinary Coverage
The scope of Applied Physics Reviews is expansive and multidisciplinary. It covers a wide range of topics including, but not limited to:
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Materials science
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Nanotechnology
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Photonics and optoelectronics
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Quantum computing
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Energy systems and renewable technologies
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Biomedical engineering
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Semiconductor devices
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Surface and interface physics
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Applied electromagnetics
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Sensors and instrumentation
Each review article published in the journal provides comprehensive insight, written by leading experts, making it a valuable resource for scientists, engineers, and academics alike.
Key Objectives
The primary goal of Applied Physics Reviews is to disseminate authoritative and accessible information that can guide researchers in both academia and industry. Its high-impact articles often shape the direction of future research, guide new technologies, and influence industrial innovations.
The journal prioritizes:
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High-quality review articles
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Emerging and rapidly evolving research areas
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Interdisciplinary perspectives
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Real-world applications of physical principles
Who Should Read Applied Physics Reviews?
The journal is ideal for:
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Researchers in applied physics and engineering
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Graduate students seeking comprehensive reviews on specific topics
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Industry professionals interested in the latest scientific innovations
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Academic institutions and libraries aiming to provide valuable reference materials
Why Applied Physics Reviews Stands Out
With an impressive impact factor and rigorous peer-review process, Applied Physics Reviews is considered one of the top journals in its field. The reviews are not only scientifically thorough but also written in a clear and engaging style that makes complex topics more understandable.
Furthermore, the journal emphasizes timeliness and relevance. It frequently publishes articles that explore new and disruptive technologies—such as AI in physical sciences, nanostructured materials, and novel energy solutions—keeping readers at the forefront of scientific innovation.
Recent Research Articles
Latest publications matched automatically by ISSN.
Spin orbit torque magnetic tunneling junction for noise-tolerant and resource-saving probabilistic binary neural network
Puyang Huang, Yu Gu, Chenyi Fu, Tianhao Chen et al.
2026-09-01 · DOI: 10.1063/5.0326491Thermal transport mechanisms in electrolytes for all-solid-state batteries
Yitian Wang, Handing Wang, Xi Chen
2026-09-01 · DOI: 10.1063/5.0318328High-entropy ceramics: Synthesis, properties, and applications
Apurba Das, Kishor Kalita, Subingya Pandey, Susmita Rabha et al.
2026-09-01 · DOI: 10.1063/5.0341531Integrated photonic devices in thin-film barium titanate: Opportunities and challenges
Hong-Lin Lin, Minghao Shang, Yuhui Yin, Wujie Fu et al.
2026-09-01 · DOI: 10.1063/5.0325359Mode-resolved phonon engineering enables phonon-controlled design of S-scheme photocatalysts
Kai Ren, Lu Yang, Ke Wang, Tariq Altalhi et al.
2026-09-01 · DOI: 10.1063/5.0341707Growth-induced compositional control of room-temperature ferrimagnetic skyrmions and their topological Hall signature in Gd-Fe single layers
Saroj Kumar Mishra, Y. K. Takahashi, C. Malavika, Karthik V. Raman et al.
2026-09-01 · DOI: 10.1063/5.0335821Droplet impact beyond Newtonian fluids: Rheology, energy, and interfacial modifiers
Abbasali Abouei Mehrizi, Zhizhao Che
2026-09-01 · DOI: 10.1063/5.0344244Interfacing superconductor and semiconductor digital electronics: A review of superconducting output drivers
Y. Mustafa, S. Köse
2026-09-01 · DOI: 10.1063/5.0326611Recent advances in design of magnetic functional alloys assisted by machine learning
Pengqiang Hu, Chao Zhou, Sidan Ding, Ruisheng Zhang et al.
2026-09-01 · DOI: 10.1063/5.0307192Advances in fundamental and applied knowledge of catalytic water splitting and CO2 reduction by in situ x-ray absorption spectroscopies
Pandian Mannu, Hai Binh Trinh, Wu-Ching Chou, Lionel Vayssieres et al.
2026-09-01 · DOI: 10.1063/5.0325074Achieving full spectrum of atomically thin 2D TMDs by CVD: From monolayers to alloys, heterostructures, and superlattices
Yiqun Zhao, Xiangning Quan, Junwei Zhang, Jun Wang et al.
2026-09-01 · DOI: 10.1063/5.0333564MXenes for multifunctional optoelectronics: Advances, challenges, and roadmap
Awais Ali, Adila Rani, Muhammad Tanveer, Muhammad Ahsan Saeed et al.
2026-09-01 · DOI: 10.1063/5.0339342Mid-infrared multidimensional upconversion imaging: Progress and prospects
Jianan Fang, Kun Huang, Ruiyang Qin, Zhen Qi et al.
2026-09-01 · DOI: 10.1063/5.0342756Rational design of high-temperature superconductors from hydrides to boron clathrates
Bin Li, Mian Wu, Zixin Cui, Chi Ding et al.
2026-09-01 · DOI: 10.1063/5.0341243Magnetohydrodynamic convective heat transfer of a hybrid nanofluid over a circular cylinder in a non-Darcy porous medium using the Keller Box method
Vinothkumar B.
2026-09-01 · DOI: 10.1063/5.0328167Phonon interactions in metal halide perovskites elucidated by Raman scattering
Alejandro R. Goñi
2026-09-01 · DOI: 10.1063/5.0316784Highly anisotropic nonrelativistic charge-to-spin conversion in altermagnets
Mingbo Dou, Xu Chen, Zhiguo Liu, Yu Sui et al.
2026-09-01 · DOI: 10.1063/5.0335951Dynamic reconfigurable metamaterials for coordinated heat and charge transport
Min Lei, Fubao Yang, Jiping Huang, Jun Wang et al.
2026-09-01 · DOI: 10.1063/5.0331285Ferroelectric domain engineering for tunable catalysis
Shun Li, Yuanzhi Hu, Xinyue Zhang, Yan Zhang et al.
2026-09-01 · DOI: 10.1063/5.0314319Low-melting-point metal routes toward making superconductors
Chen Hua, Wendi Bao, Minghui Guo, Jing Liu et al.
2026-09-01 · DOI: 10.1063/5.0332228Reviews
Community Reviews
Version History
April 21, 2025 at 10:23 am
April 21, 2025