Erwan Hermawan | Experimental methods | Innovative Research Award

Innovative Research Award

Erwan Hermawan
National Research and Innovation Agency, Indonesia
Erwan Hermawan
Affiliation National Research and Innovation Agency
Country Indonesia
Google Scholar ID sGpmYtAAAAAJ&hl
Documents 37
Citations 106
h-index 6
Subject Area Experimental methods
Event Global Energy Awards
ORCID 0000-0002-3486-7089

Erwan Hermawan is a researcher affiliated with the National Research and Innovation Agency of Indonesia whose academic profile is associated with experimental methods. The researcher is represented in scholarly indexing and researcher-identification systems, including Google Scholar and ORCID. The supplied academic profile records 37 documents, 106 citations, and an h-index of 6. These indicators provide a bibliometric description of the research record and should be interpreted in conjunction with the nature, quality, and significance of individual research contributions. [1]

Abstract

Erwan Hermawan is affiliated with the National Research and Innovation Agency in Indonesia and is associated with the subject area of experimental methods. The available researcher information identifies an academic record comprising 37 documents, 106 citations, and an h-index of 6. The profile is additionally associated with an ORCID identifier and a Google Scholar author profile, providing persistent mechanisms for distinguishing and evaluating scholarly output. [2]

Keywords

Experimental methods, Experimental research, Research methodology, Scientific experimentation, Experimental measurement, Research instrumentation, Empirical investigation, Research innovation, Scientific research, Experimental analysis, Research development, Energy research

Introduction

Experimental methods constitute an important component of scientific research because they provide systematic procedures for generating observations, testing hypotheses, evaluating measurements, and assessing reproducibility. Experimental research commonly requires clearly defined methodologies, appropriate instrumentation, controlled conditions, and transparent reporting of procedures and results. Methodological rigor is particularly important when experimental findings are intended to support subsequent scientific or technological development. [3]

Research Profile

The supplied research profile identifies Erwan Hermawan with the National Research and Innovation Agency in Indonesia and places the researcher within the subject area of experimental methods. The profile contains 37 documented scholarly outputs, 106 citations, and an h-index of 6. Bibliometric measures such as citation counts and h-index values can be useful for describing scholarly visibility, although they do not independently establish the scientific quality or originality of individual studies. [1]

Research Contributions

For an academic recognition assessment, relevant evidence may include methodological originality, experimental reproducibility, improvement of measurement procedures, development or application of research instrumentation, and the demonstrated usefulness of experimental findings. Transparent methodological reporting is an important component of research quality and reproducibility. [3]

Publications

The supplied profile records 37 documents associated with the researcher. These documents constitute the publication and scholarly-output base from which the reported citation count and h-index are derived. A complete publication-level assessment would require examination of individual titles, journals or proceedings, publication dates, authorship, subject relevance, methodological content, and citation context. [2]

Research Impact

The supplied bibliometric profile reports 106 citations across 37 documents and an h-index of 6. These indicators suggest that the research output has received measurable scholarly attention. Citation-based indicators, however, vary according to disciplinary norms, publication age, collaboration patterns, database coverage, and citation practices; consequently, they are most appropriately considered alongside qualitative evidence of research contribution and influence. [4]

Award Suitability

The Innovative Research Award associated with the Global Energy Awards provides a recognition context in which research innovation and scholarly contribution may be considered. Based on the supplied information, Erwan Hermawan’s affiliation with the National Research and Innovation Agency, research area in experimental methods, documented research output, citation record, and h-index provide relevant profile-level evidence for consideration.[2]

Conclusion

Erwan Hermawan is a researcher affiliated with the National Research and Innovation Agency in Indonesia whose supplied academic profile is associated with experimental methods. The reported record of 37 documents, 106 citations, and an h-index of 6 provides a concise bibliometric overview of scholarly activity and visibility. [1]

References

    1. ORCID. (2026). ORCID record: Erwan Hermawan, ORCID iD 0000-0002-3486-7089.
      https://orcid.org/0000-0002-3486-7089
    2. Google Scholar. (2026.). Google Scholar author profile: Erwan Hermawan.
      https://scholar.google.com/citations?user=sGpmYtAAAAAJ&hl=en
    3.  Erwan Hermawan. (2024).Case Studies in Chemical and Environmental Engineering
      https://scholar.google.com/citations?view_op=view_citation&hl=en&user=sGpmYtAAAAAJ&citation_for_view=sGpmYtAAAAAJ:_kc_bZDykSQC
    4. Global Energy Awards. (2026). Global Energy Awards official website.
      https://globalenergyawards.org/

Adiarso Adiarso | Experimental Methods | Innovative Research Award

Innovative Research Award

Adiarso Adiarso
National Research and Innovation Agency (BRIN), Indonesia

Adiarso Adiarso
Affiliation National Research and Innovation Agency (BRIN)
Country Indonesia
Google Scholar ID xpuuJuQAAAAJ
Documents 109
Citations 606
h-index 13
Subject Area Experimental Methods
Event Global Energy Awards
ORCID 0000-0002-0999-5556

Adiarso Adiarso is a researcher affiliated with the National Research and Innovation Agency (BRIN), Indonesia, whose academic profile is associated with the subject area of experimental methods. The researcher profile supplied for this recognition article records 109 documents, 606 citations, and an h-index of 13. These indicators provide a bibliometric snapshot of scholarly activity and citation influence and are presented as supplied profile information rather than as an independent assessment of research quality.[1] The recognition considered here is the Innovative Research Award associated with the Global Energy Awards.

Abstract

This article presents an academic recognition profile for Adiarso Adiarso, affiliated with the National Research and Innovation Agency (BRIN), Indonesia, in connection with the Innovative Research Award under the Global Energy Awards. The supplied researcher information identifies Experimental Methods as the principal subject area and reports 109 documents, 606 citations, and an h-index of 13. Bibliometric indicators such as publication counts, citation counts, and the h-index are commonly used to describe dimensions of scholarly productivity and citation impact, although they should be interpreted in relation to disciplinary and career-stage differences. The present profile therefore combines the supplied quantitative indicators with a qualitative description of experimental research relevance without asserting findings or achievements that are not documented in the provided information. [3]

Keywords

Experimental Methods, Experimental Research, Research Methodology, Energy Research, Energy Systems, Laboratory Methods, Experimental Design, Measurement Techniques, Scientific Instrumentation, Data Acquisition, Research Innovation, Energy Technology, Applied Research, Research Evaluation, Global Energy Awards, Innovative Research Award

Introduction

Experimental methods constitute an important component of scientific and engineering research because they provide systematic approaches for obtaining observations, testing hypotheses, validating models, and evaluating technological concepts. Well-designed experiments typically require clearly defined variables, appropriate measurement procedures, controlled conditions where applicable, and reproducible methods for recording and interpreting observations.[3]

Research Profile

The available bibliometric information reports 109 documents and 606 citations, with an h-index of 13. The h-index is a commonly used bibliometric indicator that attempts to combine publication productivity with citation frequency, although it does not by itself measure research quality, societal value, methodological rigor, or the originality of individual publications.[2]

Research Contributions

Based on the supplied subject classification, the research profile can be situated within the methodological dimension of experimental science. Experimental research contributes to scientific knowledge by generating empirical observations that can be compared with theoretical expectations, numerical simulations, or engineering performance requirements. The quality of such contributions depends on appropriate experimental design, measurement accuracy, documentation, uncertainty assessment, and reproducibility.[3]

Publications

The supplied researcher profile records 109 documents. This figure represents the publication/document count provided for this article and should not be interpreted as a manually verified bibliographic inventory. The individual publication titles, journals, years, citation distributions, and DOI identifiers were not supplied as part of the source data.[1]

Research Impact

The supplied bibliometric indicators include 606 citations and an h-index of 13. Citation counts can provide an indication of how frequently published research has been referenced in subsequent scholarly literature, while the h-index provides a combined measure of publication output and citation frequency. Both indicators are affected by disciplinary citation practices, publication age, database coverage, collaboration patterns, and other factors.[2]

Award Suitability

The Innovative Research Award profile is aligned with the supplied subject classification of Experimental Methods and the researcher’s reported scholarly indicators. Experimental methodology is particularly relevant to innovation-oriented research because systematic experimentation can be used to test concepts, characterize systems, validate technical approaches, and generate evidence for further development. [3]

Conclusion

The Innovative Research Award profile emphasizes the relationship between experimental methodology, empirical evidence, and innovation-oriented research. Further assessment of specific research achievements should be based on verified publications, documented experimental contributions, and the formal criteria established for the Global Energy Awards. [2]

References

 

  1. ORCID. (2026). ORCID record for Adiarso Adiarso. ORCID.
    https://orcid.org/0000-0002-0999-5556
  2. Google Scholar. (2026.). Google Scholar author profile: Adiarso Adiarso, Author ID xpuuJuQAAAAJ. Google Scholar.
    https://scholar.google.com/citations?user=xpuuJuQAAAAJ&hl=id
  3. Global Energy Awards. (2026). Global Energy Awards official website.
    https://globalenergyawards.org/

Robert CHEHAB | Experimental methods | Best Innovation Award

Dr.Robert CHEHAB | Experimental methods | Best Innovation Award

Accelerator physicist at IN2P3/CNRS in France

Dr. Robert Chehab, born on October 22, 1937, in Alexandria, Egypt, is a renowned physicist specializing in accelerator physics. He holds French nationality and has had a prestigious academic and scientific career. Dr. Chehab completed his engineering degree from the prestigious École Nationale Supérieure des Télécommunications (now TELECOM-Paris-Tech) in 1963, followed by a PhD in Physical Sciences from Université d’Orsay in 1975. His work has been instrumental in advancing our understanding of positron sources, channeling radiation, and radiation physics. Over his career, he has collaborated with leading institutions such as CERN, KEK, DESY, and SLAC. As a scientist and educator, he has mentored PhD students in radiation and positron source research. Fluent in five languages, Dr. Chehab has contributed significantly to accelerator physics research globally.

Profile:

Education:

Dr. Robert Chehab’s academic journey began at the École Nationale Supérieure des Télécommunications (ENST), now known as TELECOM-Paris-Tech, where he obtained his engineering degree in 1963. His rigorous technical education at ENST laid the foundation for his subsequent focus on accelerator physics. In 1975, he earned his PhD (Docteur-Ingénieur en Sciences Physiques) from the Université d’Orsay. His PhD work explored fundamental concepts in radiation physics and beam dynamics, setting the stage for a prolific research career. Throughout his educational journey, Dr. Chehab showed a deep understanding of complex scientific phenomena such as Cherenkov radiation, positron sources, and channeling radiation, positioning himself as a leading figure in his field. His multidisciplinary expertise has also allowed him to maintain fluency in French, English, Italian, Russian, and Arabic, further enhancing his global scientific impact.

Professional experience:

Dr. Robert Chehab has accumulated extensive experience in both academic and international research environments. He has spent a significant portion of his career at Université Paris-Saclay, where he has led various research projects on accelerator physics. Dr. Chehab has worked in prestigious laboratories worldwide, including extended stays at KEK in Japan, where he conducted research on positron sources and channeling radiation. He also contributed to experiments at DESY in Germany, focusing on transition radiation, and collaborated with BINP-Novosibirsk on channeling radiation studies. His leadership at CERN, particularly in the WA 103 experiment, has cemented his reputation as a leader in accelerator and radiation physics. Additionally, Dr. Chehab has supervised PhD students and played a critical role in mentoring the next generation of scientists.

Research focus:

Dr. Robert Chehab’s research focuses primarily on accelerator physics, with an emphasis on radiation studies. His work spans various topics, including positron sources, channeling radiation, Cherenkov radiation, transition radiation, and photoemission. He has been actively involved in understanding and developing novel radiation physics techniques for advanced accelerator applications. Dr. Chehab’s research also delves into beam dynamics and RF deflectors, expanding the theoretical and practical frameworks of accelerator science. His notable collaborations with CERN on positron source development for the LEP experiment and SLAC on crystal radiator damage tests have pushed the boundaries of what is known about particle interactions with radiation. His work is essential for innovations in particle accelerators, helping to develop the technology used in numerous high-energy physics experiments.

Awards & Honor:

Throughout his distinguished career, Dr. Robert Chehab has been recognized for his contributions to accelerator physics and radiation studies. He has been involved in numerous international collaborations with esteemed institutions such as CERN, KEK, SLAC, and DESY, where his innovative research in positron sources and radiation physics has earned him accolades. Dr. Chehab’s leadership in major projects, such as the LEP positron source collaboration at CERN, has further solidified his stature in the scientific community. His research has been published in leading journals like Nuclear Instruments and Methods, Physical Review, and Physics Letters. While his awards and recognitions are primarily rooted in his research, his contribution to academic mentorship, especially his guidance of PhD students in advanced radiation physics, has been equally commendable. His work continues to impact both experimental methods and the broader scientific community.

Publication Top Notes:

  • From bremsstrahlung to channeling radiation: A promising way for positron generation
    Chehab, R.
    Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2024, 1060, 169056
    Citations: 0
  • Advantages of hybrid positron sources with granular converters
    Chehab, R., Chaikovska, I., Alharthi, F., Wallon, S., Sievers, P.
    Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2024, 1060, 168994
    Citations: 0
  • Benchmarking the FCC-ee positron source simulation tools using the SuperKEKB results
    Alharthi, F., Chaikovska, I., Chehab, R., Miyahara, F., Mytrochenko, V.
    Journal of Physics: Conference Series, 2024, 2687(2), 022010
    Citations: 0
  • Radiation in oriented crystals: Innovative application to future positron sources
    Soldani, M., Alharthi, F., Bandiera, L., Sytov, A., Tikhomirov, V.
    Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 2024, 1058, 168828
    Citations: 1
  • Crystal-based pair production for a lepton collider positron source
    Bandiera, L., Bomben, L., Camattari, R., Tikhomirov, V., Vallazza, E.
    European Physical Journal C, 2022, 82(8), 699
    Citations: 6
  • Positron sources: From conventional to advanced accelerator concepts-based colliders
    Chaikovska, I., Chehab, R., Kubytskyi, V., Hogan, M.J., Martyshkin, P.
    Journal of Instrumentation, 2022, 17(5), P05015
    Citations: 12
  • HE-LHC: The High-Energy Large Hadron Collider: Future Circular Collider Conceptual Design Report Volume 4
    Abada, A., Abbrescia, M., AbdusSalam, S.S., Zupan, J., Zurita, J.
    European Physical Journal: Special Topics, 2019, 228(5), pp. 1109–1382
    Citations: 159
  • FCC-hh: The Hadron Collider: Future Circular Collider Conceptual Design Report Volume 3
    Abada, A., Abbrescia, M., AbdusSalam, S.S., Zupan, J., Zurita, J.
    European Physical Journal: Special Topics, 2019, 228(4), pp. 755–1107
    Citations: 501
  • FCC Physics Opportunities: Future Circular Collider Conceptual Design Report Volume 1
    Abada, A., Abbrescia, M., AbdusSalam, S.S., Zupan, J., Zurita, J.
    European Physical Journal C, 2019, 79(6), 474
    Citations: 540
  • FCC-ee: The Lepton Collider: Future Circular Collider Conceptual Design Report Volume 2
    Abada, A., Abbrescia, M., AbdusSalam, S.S., Zupan, J., Zurita, J.
    European Physical Journal: Special Topics, 2019, 228(2), pp. 261–623
    Citations: 619

Conclusion:

Dr. Robert Chehab’s extensive experience, significant contributions to accelerator physics, and international collaborations make him a strong candidate for the Best Researcher Award. His mentorship and prolific publication record add to his credentials. To further elevate his impact, engaging with newer fields of research and amplifying his public outreach would strengthen his candidacy for future recognitions.