Focus and Scope
Global Journal of Physics (GJPHY) is a peer-reviewed academic journal that publishes original, high-quality, and rigorously reviewed research in theoretical, experimental, and applied physics. The journal prioritizes contributions that demonstrate strong theoretical foundation, experimental validity, and methodological rigor, with relevance to contemporary challenges in physics at national, regional, and global levels.
The journal welcomes theoretical, experimental, and computational studies that advance fundamental understanding and practical applications of physics. Particular emphasis is placed on research that integrates physics with emerging technologies, data science, and interdisciplinary scientific innovation.
GJPHY aims to advance physical sciences by promoting reproducible research, encouraging innovation in theory and experimentation, and supporting the application of physics in solving real-world problems. The journal positions itself as a platform for high-impact scholarship with strong international visibility and citation potential.
Scope
1. Theoretical Physics
- Classical and quantum mechanics
- Field theory and particle physics
- Relativity and gravitation
- Mathematical physics
2. Experimental Physics
- Experimental methods and instrumentation
- Measurement techniques and data analysis
- Laboratory-based physical investigations
3. Condensed Matter and Materials Physics
- Solid-state physics
- Nanomaterials and nanotechnology
- Electronic, optical, and magnetic materials
4. Atomic, Molecular, and Optical Physics
- Atomic and molecular interactions
- Laser physics and photonics
- Spectroscopy and quantum optics
5. Nuclear and Particle Physics
- Nuclear structure and reactions
- High-energy physics and particle interactions
- Accelerator physics
6. Astrophysics and Cosmology
- Stellar and galactic physics
- Cosmology and the early universe
- Space science and observational astrophysics
7. Applied Physics and Engineering Physics
- Applied physics in engineering and technology
- Energy systems and renewable energy
- Semiconductors and device physics
8. Computational and Data-Driven Physics
- Numerical modeling and simulation
- Computational physics methods
- Physics-informed machine learning
9. Environmental and Geophysical Physics
- Atmospheric and climate physics
- Geophysics and earth systems
- Environmental monitoring and modeling
10. Physics Education
- Teaching and learning of physics
- Curriculum and assessment
- Technology-enhanced physics education
Editorial Emphasis
- Clear research gap and originality
- Strong theoretical and experimental contribution
- Robust, transparent, and reproducible methodology
- Analytical depth and scientific rigor
- Interdisciplinary relevance and innovation
- Use of recent and high-quality international references




