Best Researcher Award
| Fatna ZAHIRI | |
|---|---|
| Researcher | Fatna ZAHIRI |
| Affiliation | Hassan First, Morocco |
| Country | Morocco |
| Scopus ID | 57260942900 |
| Documents | 5 |
| Citations | 14 |
| h-index | 2 |
| Subject Area | EPR dosimetry |
| Event | Global Particle Physics Excellence Awards |
Fatna ZAHIRI is a researcher affiliated with Hassan First in Morocco whose documented scholarly profile includes research activity in EPR dosimetry. The available bibliographic information records 5 documents, 14 citations, and an h-index of 2 in the supplied Scopus profile. These indicators provide a bibliometric snapshot of research activity and scholarly visibility and are considered alongside the research subject area when assessing academic recognition. [1]
Abstract
This academic recognition profile presents the research record of Fatna ZAHIRI, affiliated with Hassan First in Morocco, with a stated subject-area focus on electron paramagnetic resonance (EPR) dosimetry. EPR dosimetry is an analytical approach in which radiation-induced paramagnetic species can be characterized through electron paramagnetic resonance measurements, supporting the study and assessment of radiation effects in appropriate dosimetric materials.
Keywords
- EPR dosimetry
- Electron Paramagnetic Resonance
- Radiation Dosimetry
- Particle Physics
- Radiation Science
- Dosimetric Materials
- Research Excellence
Introduction
EPR dosimetry occupies an interdisciplinary position at the interface of radiation physics, materials science, spectroscopy, and measurement science. Electron paramagnetic resonance can detect species containing unpaired electrons and can therefore be used to investigate radiation-induced paramagnetic centers in suitable materials.
Research Profile
The supplied researcher information identifies Fatna ZAHIRI as being affiliated with Hassan First, Morocco, with EPR dosimetry specified as the principal subject area for this recognition profile. Her Scopus Author ID is 57260942900. The supplied bibliometric record contains 5 documents, 14 citations, and an h-index of 2.
Research Contributions
Research associated with EPR dosimetry contributes to the broader scientific objective of understanding and measuring radiation effects through spectroscopic detection of paramagnetic centers. Such work can involve the preparation and characterization of dosimetric materials, measurement of radiation-induced EPR signals, assessment of signal stability, calibration against known radiation exposures, and evaluation of factors that influence measurement accuracy.
Publications
The publication record should therefore be consulted through the researcher’s Scopus author profile when a complete publication bibliography is required. Bibliographic records may subsequently be supplemented with verified DOI identifiers, journal metadata, publication dates, and citation information.
Research Impact
The supplied profile reports 14 citations and an h-index of 2.These figures indicate that the indexed publication record has received measurable scholarly attention. In evaluating impact, however, citation metrics should be considered in relation to the maturity of the researcher’s publication record, the characteristics of the relevant research field, and the nature of the cited documents.
Award Suitability
Fatna ZAHIRI’s stated specialization in EPR dosimetry provides a scientific connection to radiation physics and measurement research, which can be considered relevant to recognition programs focused on particle physics and closely related physical-science disciplines. The proposed recognition is associated with the Global Particle Physics Excellence Awards.Based on the supplied information, the profile demonstrates a documented research presence in a specialized area of radiation science together with indexed scholarly output and citation activity.
Conclusion
Fatna ZAHIRI, affiliated with Hassan First in Morocco, is presented in this profile as a researcher working in the area of EPR dosimetry. The supplied Scopus information records 5 documents, 14 citations, and an h-index of 2. [3] EPR dosimetry provides a scientifically relevant connection between electron paramagnetic resonance, radiation measurement, and applied physical science. [2]
External Links
References
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- Dosimetric response of lithium formate monohydrate to neutron irradiation using EPR. Radiation Physics and Chemistry, 240, 113441.
https://doi.org/10.1016/j.radphyschem.2025.113441 - Accuracy estimation of selected EPR dosimetry systems for dose assessment in stereotactic radiotherapy of brain cancer. Applied Radiation and Isotopes, 227, 112275.
https://doi.org/10.1016/j.apradiso.2025.112275 - EPR analysis and spectral deconvolution of alanine dosimetric properties. Journal of Radioanalytical and Nuclear Chemistry, 334(4), 2657–2670.
https://doi.org/10.1007/s10967-025-10040-2
- Dosimetric response of lithium formate monohydrate to neutron irradiation using EPR. Radiation Physics and Chemistry, 240, 113441.