Research Areas

Research covered by this journal

Journal of Physics, Photonics and Quantum Science is a journal in the EJSIR Publisher programme, focused on Physics, Photonics and Quantum Science. Its scope is organized into academic sections covering Condensed Matter Physics, Photonics & Optics, Quantum Computing, Quantum Information, Quantum Materials, Atomic & Molecular Physics, Applied Physics, Laser Science, Quantum Sensing & Metrology and Computational Physics. This structure helps authors assess disciplinary fit and gives readers a clear route through the journal’s subject coverage. The journal welcomes original research article, review article, systematic review, short communication and other contributions described in its author guidance when they fit the scope. Approaches may include analytical theory, computational modelling, synthesis, spectroscopy, microscopy, measurement, characterization and controlled experiments. Authors should report sample preparation, instrument or model settings, calibration, uncertainty and relevant controls, and connect interpretations to the evidence presented. Authors should engage relevant scholarship, explain the contribution and report limitations needed for critical assessment. Editorial assessment considers journal fit, methodological or interpretive quality, research integrity and clarity. The stated review model is double-anonymous peer review, normally with at least two independent reviewers. Publisher policies on ethics, access, authorship, conflicts, data and corrections apply alongside this journal’s scope. Submission information is provided on this site; manuscripts can be submitted only after the journal’s submission route opens.

How to use this topic map

Choose the area that best describes the manuscript’s main scholarly contribution, then review the linked section scope. A topic match is a starting point; authors should also check the complete aims and scope.

Physical & Materials Sciences

Condensed Matter Physics

This section covers condensed matter physics within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Photonics & Optics

This section covers photonics & optics within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Quantum Computing

This section covers quantum computing within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Quantum Information

This section covers quantum information within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Quantum Materials

This section covers quantum materials within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Atomic & Molecular Physics

This section covers atomic & molecular physics within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Applied Physics

This section covers applied physics within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Laser Science

This section covers laser science within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Quantum Sensing & Metrology

This section covers quantum sensing & metrology within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →
Physical & Materials Sciences

Computational Physics

This section covers computational physics within physics, photonics and quantum science. It welcomes foundational questions, methodological contributions and well-supported applications that make a clear scholarly contribution. Authors should identify the problem, explain why the chosen approach is suitable, and report the sources, methods, assumptions or evidence needed for readers to assess the work.

Read this area’s section scope →