Introduction

Epistora Journal of Applied Physics and Materials Science (EJAPMS) is a premier peer-reviewed, open access journal dedicated to advancing the frontiers of applied physics and materials science. Established to bridge fundamental research with real-world applications, EJAPMS serves as a global platform for scientists, engineers and researchers to disseminate transformative discoveries

The journal embraces the full spectrum of applied physics - from quantum phenomena and condensed matter systems to nanotechnology, photonics and advanced functional materials. With a rigorous double-blind peer review process and rapid publication workflow, we ensure that high-impact research reaches the global community without delay. All articles are published under the CC BY 4.0 license, enabling unrestricted access, reuse, and maximum societal impact

Our commitment extends beyond traditional publishing. We actively promote interdisciplinary collaboration, data transparency and reproducible science. By combining scholarly excellence with modern publishing innovations - including audio article summaries and digital preservation - EJAPMS is shaping the future of physics and materials research communication

Aim & Scope

Aim: To accelerate scientific discovery and technological innovation by publishing high-quality, rigorously peer-reviewed research across all domains of applied physics and materials science. We aim to foster interdisciplinary dialogue, support early-career researchers and provide an inclusive open access home for transformative science

Scope: The journal welcomes original research articles, comprehensive reviews, short communications, technical notes, perspectives and data papers covering, but not limited to:

Quantum Mechanics Quantum Computing Quantum Information Astrophysics Cosmology Particle Physics High Energy Physics Condensed Matter Superconductivity Topological Materials Applied Physics Nanotechnology Computational Physics Optics Photonics Biophysics Plasma Physics Statistical Mechanics Nuclear Physics Gravitational Waves Dark Matter String Theory Mathematical Physics Geophysics Atomic & Molecular Physics Fluid Dynamics Nonlinear Dynamics Quantum Materials 2D Materials Topological Insulators Spintronics Nanophotonics Metamaterials Energy Materials Perovskite Solar Cells Battery Materials Thermoelectrics Catalysis Thin Films & Coatings Semiconductor Physics Optoelectronics Phononics Plasmonics Soft Matter Physics Complex Systems Computational Materials Machine Learning in Physics Biomaterials Physics Magnetic Materials Ferroelectrics Multiferroics

Article Types

  • Original Research - Full-length reports of novel discoveries, experimental validations and theoretical breakthroughs. Up to 8,000 words with comprehensive data and methodology
  • Review Articles - Critical synthesis of emerging fields, systematic reviews and meta-analyses with future research directions. Up to 6,000 words
  • Short Communications - Urgent findings, preliminary results and time-sensitive research requiring rapid dissemination. Up to 2,500 words with concise presentation
  • Technical Notes - Methodological innovations, new experimental techniques, instrumentation developments and simulation advancements
  • Perspectives - Expert viewpoints on emerging trends, policy implications and future challenges in applied physics and materials science
  • Data Papers - Comprehensive description of high-quality datasets, including curated experimental data and computational results, with reuse potential

Mission & Values

Accelerate discovery through trusted open access. Core principles: scientific rigour, constructive peer review, rapid decisions, global accessibility without financial barriers. Bridging fundamental physics with real-world applications - quantum technologies, climate science, materials innovation

Indexing & Archiving

Google Scholar Research Gate CrossRef DOI ISSN Academia R Discovery

Published content is maintained through structured digital preservation and accessibility practices designed to support long-term scholarly availability and continued research access