Applied Physics Reviews

Scope & Guideline

Unveiling Innovations in Physics Research

Introduction

Immerse yourself in the scholarly insights of Applied Physics Reviews with our comprehensive guidelines detailing its aims and scope. This page is your resource for understanding the journal's thematic priorities. Stay abreast of trending topics currently drawing significant attention and explore declining topics for a full picture of evolving interests. Our selection of highly cited topics and recent high-impact papers is curated within these guidelines to enhance your research impact.
LanguageEnglish
ISSN1931-9401
PublisherAIP Publishing
Support Open AccessNo
CountryUnited States
TypeJournal
Convergefrom 2014 to 2024
AbbreviationAPPL PHYS REV / Appl. Phys. Rev.
Frequency4 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address1305 WALT WHITMAN RD, STE 300, MELVILLE, NY 11747-4501

Aims and Scopes

Applied Physics Reviews focuses on the intersection of applied physics and engineering, emphasizing innovative materials, devices, and systems with practical applications across various fields.
  1. Materials Science and Engineering:
    The journal explores the synthesis, characterization, and application of advanced materials, including nanomaterials, polymers, and composites, for various technological applications.
  2. Nanotechnology and Nanomaterials:
    A significant emphasis is placed on the development and application of nanostructured materials, including their use in sensors, electronics, and energy storage.
  3. Device Fabrication and Integration:
    Research on the design, fabrication, and integration of novel devices such as photodetectors, transistors, and sensors is a core focus area.
  4. Quantum Technologies and Information Science:
    The journal publishes research on quantum devices, quantum computing, and quantum information processing, reflecting the growing importance of quantum technologies.
  5. Biophysics and Biomedical Applications:
    Applied Physics Reviews includes studies on biophysics and the application of physical principles to biomedical fields, including biosensors and tissue engineering.
  6. Energy Solutions and Sustainability:
    Research related to energy materials, storage solutions, and sustainable technologies is a vital aspect of the journal's focus, addressing global energy challenges.
Recent publications in Applied Physics Reviews have highlighted several trending and emerging themes that reflect the forefront of research in applied physics and engineering.
  1. 2D Materials and Heterostructures:
    There is a significant increase in research concerning two-dimensional materials and their heterostructures, which are being explored for their unique properties and applications in electronics, photonics, and energy storage.
  2. Quantum Materials and Devices:
    The journal has seen a surge in studies related to quantum materials, focusing on their potential for quantum computing, sensing, and information processing.
  3. Bio-inspired and Biomimetic Materials:
    Emerging research on materials and devices inspired by biological systems is gaining traction, particularly in areas like flexible electronics and tissue engineering.
  4. Energy Harvesting and Conversion Technologies:
    There is a growing emphasis on innovative energy harvesting technologies, including triboelectric and piezoelectric devices, as well as advances in energy storage solutions like supercapacitors and batteries.
  5. Machine Learning in Materials Science:
    The integration of machine learning and artificial intelligence techniques in materials discovery and characterization is becoming increasingly prominent, showcasing the intersection of computational and experimental approaches.

Declining or Waning

While Applied Physics Reviews continues to evolve, certain themes have seen a decline in prominence in recent publications, reflecting shifts in research focus and emerging technologies.
  1. Traditional Semiconductor Technologies:
    The emphasis on conventional semiconductor materials and devices appears to be waning as research shifts towards more innovative materials and structures, such as 2D materials and organic semiconductors.
  2. Passive Optical Devices:
    There is a noticeable reduction in publications related to passive optical devices, as the field increasingly focuses on active devices and integrated photonics for improved functionality.
  3. Classical Photonics:
    Research centered around classical photonic devices, such as traditional laser technologies, is becoming less frequent as more attention is directed towards emerging fields like quantum optics and nanophotonics.

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