Duncan Nkolokosa | Condensed Matter Physics | Best Researcher Award

Global Physics Awards

Duncan Nkolokosa
Affiliation Lilongwe University Of Agriculture and Natural Resources
Country Malawi
Scopus ID 59209131200
Documents 5
Citations 18
h-index 3
Subject Area Condensed Matter Physics
Event Global Physics Awards
ORCID 0000-0001-9140-1763

Duncan Nkolokosa is a researcher affiliated with Lilongwe University Of Agriculture and Natural Resources in Malawi, with a research profile associated with Condensed Matter Physics. The available bibliographic record identifies five documents, eighteen citations, and an h-index of three in Scopus. This article presents the available research-profile information in the context of the Global Physics Awards and provides a structured overview of publication activity, citation impact, and academic recognition considerations.[1]

Abstract

Duncan Nkolokosa is a Malawi-based researcher affiliated with Lilongwe University Of Agriculture and Natural Resources, with scholarly activity associated with Condensed Matter Physics. Available Scopus information records five documents, eighteen citations, and an h-index of three. This article summarizes the bibliographic profile, publication activity, citation record, and research context relevant to the Global Physics Awards [1]

Keywords

Duncan Nkolokosa; Condensed Matter Physics; Lilongwe University Of Agriculture and Natural Resources; Malawi; Scopus; bibliometrics; research publications; citation analysis; h-index; Global Physics Awards.

Introduction

Duncan Nkolokosa is identified in bibliographic records as a researcher affiliated with Lilongwe University Of Agriculture and Natural Resources in Malawi. His recorded subject area is Condensed Matter Physics, a broad field concerned with the physical properties and collective behavior of matter. The available Scopus profile provides a quantitative basis for describing his documented scholarly output and citation activity. [1]

Research Profile

The available research profile records five documents and eighteen citations, producing an h-index of three. These indicators describe the indexed publication and citation record available through the stated Scopus author identifier. [1]

Research Contributions

Nkolokosa’s documented research classification falls within Condensed Matter Physics. Assessment of specific contributions requires consideration of the individual publications, research questions, methods, results, and subsequent scholarly use of those findings. Aggregate bibliometric information establishes the existence and citation level of the indexed record but does not, by itself, establish the scientific significance of individual contributions. [1]

Publications

The stated Scopus record contains five documents associated with the researcher identifier 59209131200. A complete publication assessment would normally distinguish document type, journal or conference venue, publication year, co-authorship, subject classification, and citation distribution. Those publication-level details are not reproduced here where they have not been independently supplied or verified. [1]

Research Impact

The available bibliometric indicators show eighteen citations across five indexed documents and an h-index of three.Citation counts can provide one quantitative view of scholarly visibility, while citation practices vary among disciplines, publication types, years, and research communities. Consequently, bibliometric indicators are most appropriately considered alongside qualitative evidence concerning research contribution and influence. [2][1]

Award Suitability

For the Global Physics Awards, the documented affiliation, subject area, publication record, and bibliometric indicators provide identifiable elements for a research-profile review.A final award assessment would depend on the applicable award criteria and any supporting evidence submitted for evaluation. The information presented here therefore describes relevant documented characteristics rather than making an independent determination of award outcome.[3]

Conclusion

Duncan Nkolokosa has a documented research profile associated with Condensed Matter Physics at Lilongwe University Of Agriculture and Natural Resources in Malawi. The available Scopus information records five documents, eighteen citations, and an h-index of three. [1]

References

  1. Elsevier. (2026). Scopus author details: Duncan Nkolokosa, Author ID 59209131200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59209131200
  2. ORCID. (2026.). ORCID record for Duncan Nkolokosa.
    https://orcid.org/0000-0001-9140-1763
  3. Power quality performance assessment of stand-alone minigrids in Kenya.
    https://www.sciencedirect.com/science/article/pii/S175500842600116X
  4. Global Physics Awards (2026.). Official Global Physics Awards Website.
    https://globalphysicsawards.com/

Habte Berry | Condensed Matter Physics | Best Researcher Award

Global Physics Awards

Habte Berry — Wolkite University, Ethiopia

Habte Berry
Affiliation Wolkite University
Country Ethiopia
Scopus ID 57200122634
Documents 11
Citations 36
h-index 4
Subject Area Condensed Matter Physics
Event Global Physics Awards
ORCID 0000-0002-4313-4645

Habte Berry is a researcher affiliated with Wolkite University in Ethiopia whose supplied academic profile is associated with the field of Condensed Matter Physics. The profile data provided for this recognition page records 11 documents, 36 citations, and an h-index of 4 in Scopus. These bibliometric indicators provide a quantitative snapshot of indexed research activity and should be interpreted in relation to publication field, career stage, collaboration patterns, and database coverage. [1]

The Global Physics Awards recognition framework is presented here as an academic profile associated with research activity in physics. This page summarizes the supplied researcher information, subject area, publication indicators, research relevance, and available external identifiers without making claims beyond the information provided.

Abstract

This academic recognition profile presents the supplied research information for Habte Berry of Wolkite University, Ethiopia, within the subject area of Condensed Matter Physics. The available profile identifies a Scopus author record with 11 documents, 36 citations, and an h-index of 4. The researcher is also associated with the ORCID identifier 0000-0002-4313-4645, providing a persistent digital identifier for scholarly work. [2][1]

Introduction

Condensed Matter Physics is a major branch of modern physics concerned with the properties of systems containing large numbers of interacting particles. Research in this area commonly examines how microscopic interactions produce measurable macroscopic properties, with applications extending to materials science, electronics, energy technologies, nanoscience, and quantum technologies.[1]

Research Profile

The profile places Habte Berry within Condensed Matter Physics. Based on the supplied data, the research record contains 11 indexed documents and has accumulated 36 citations, with a reported h-index of 4.Bibliometric measures such as document counts, citation counts, and h-index values can be useful for describing indexed research activity, although they do not by themselves provide a complete assessment of scientific quality or significance.

Research Contributions

The available information supports describing Habte Berry’s scholarly profile as being associated with Condensed Matter Physics.However, the provided data does not specify individual research projects, experimental systems, theoretical models, materials, instruments, or principal findings; consequently, specific scientific contributions should be assessed from the researcher’s individual publications rather than inferred from bibliometric indicators alone. [1][3]

Publications

The supplied profile reports 11 documents indexed under Scopus Author ID 57200122634.Individual publication titles, journals, publication years, co-authors, and DOI identifiers were not included in the provided input. For accuracy, specific publication-level bibliographic information should therefore be obtained directly from the researcher’s authoritative scholarly records rather than reconstructed from incomplete profile data.[1][3]

Research Impact

The supplied bibliometric record indicates 36 citations across 11 documents and a reported h-index of 4.These indicators can be used as descriptive measures of indexed scholarly visibility. Citation-based metrics, however, vary among disciplines and publication communities and should be considered alongside the content and quality of individual research outputs, collaboration, reproducibility, and broader scholarly contributions.[2] [1]

Award Suitability

For the purposes of the Global Physics Awards recognition framework, the supplied academic profile establishes a clear subject-area association with Condensed Matter Physics and provides identifiable institutional and scholarly-profile information. The reported Scopus record and ORCID identifier can serve as supporting profile documentation. [1] [2]

Conclusion

Habte Berry’s supplied academic profile identifies Wolkite University in Ethiopia as the institutional affiliation and Condensed Matter Physics as the principal subject area. The provided Scopus information records 11 documents, 36 citations, and an h-index of 4, while the ORCID identifier provides a persistent scholarly identity reference. [1] [2]

References

  1. Elsevier (2026.). Scopus author details: Habte Berry, Author ID 57200122634. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57200122634
  2. ORCID (2026.). ORCID record: Habte Berry, ORCID iD 0000-0002-4313-4645. ORCID.
    https://orcid.org/0000-0002-4313-4645
  3. Theoretical investigation of size and shape dependent melting temperature of transition metal clusters.
    https://www.sciencedirect.com/science/article/abs/pii/S0038109823002946
  4. Global Physics Awards (2026). Global Physics Awards 
    https://globalphysicsawards.com/

Feng Peng | Condensed Matter Physics | Best Researcher Award

Global Physics Awards

Feng Peng
Luoyang Normal University, China

Feng Peng
Affiliation Luoyang Normal University
Country China
Scopus ID 57209192020
Documents 95
Citations 4,129
h-index 32
Subject Area Condensed Matter Physics
Event Global Physics Awards
ORCID 0000-0001-6501-5148

Feng Peng is affiliated with Luoyang Normal University in China and is associated with the research area of condensed matter physics. The supplied Scopus information reports 95 documents, 4,129 citations, and an h-index of 32 for Scopus Author ID 57209192020. These bibliometric indicators provide quantitative information about indexed scholarly activity and should be interpreted alongside publication quality, research contributions, collaboration, and field-specific citation practices.
[1][2]

Abstract

This academic recognition profile presents information about Feng Peng of Luoyang Normal University, China, in relation to the Global Physics Awards. The supplied researcher information identifies condensed matter physics as the principal subject area and reports 95 documents, 4,129 citations, and an h-index of 32 in the associated Scopus author record.
[1][2]

Keywords

Feng Peng; Condensed Matter Physics; Physics Research; Materials Physics; Solid-State Physics; Nanomaterials; Research Impact; Bibliometrics; Scopus; Global Physics Awards; Luoyang Normal University; China.

Introduction

Condensed matter physics is a major area of modern physics concerned with the properties and behavior of matter in systems containing large numbers of interacting particles. Its scope includes electronic, magnetic, optical, structural, thermal, and mechanical properties of materials, as well as phenomena arising from collective interactions.[1]

Research Profile

The supplied academic profile identifies Feng Peng with Luoyang Normal University in China. The stated subject area is condensed matter physics, a broad discipline encompassing research on the physical properties of condensed phases and complex material systems. The associated Scopus Author ID is 57209192020.
[1]

Research Contributions

Research within condensed matter physics can address fundamental questions concerning materials, interactions, electronic and magnetic properties, phase behavior, nanostructures, and emergent physical phenomena. The supplied subject-area classification places Feng Peng’s research profile within this broad scientific domain[1]

Publications

The supplied Scopus profile reports 95 documents associated with Feng Peng and Author ID 57209192020.Digital Object Identifiers, where available, provide persistent identifiers for individual scholarly publications. No specific publication title or DOI was supplied with the researcher information in this request; therefore, individual DOI records are not attributed to Feng Peng without verified bibliographic data.[1][2]

Research Impact

Research impact can be assessed through multiple dimensions, including scholarly citations, quality and originality of publications, methodological contributions, collaboration, reproducibility, educational influence, and practical or technological applications.[1]

Award Suitability

The supplied academic information provides several factors that may be considered when evaluating Feng Peng for recognition within a physics awards framework. These include the stated alignment with condensed matter physics, a reported record of 95 documents, 4,129 citations, and an h-index of 32.[1][2]

Conclusion

Feng Peng is identified in the supplied information as a researcher affiliated with Luoyang Normal University, China, with a research subject area of condensed matter physics. The reported Scopus profile contains 95 documents, 4,129 citations, and an h-index of 32.
[1]

References

  1. Elsevier (2026). Scopus author details: Feng Peng, Author ID 57209192020. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57209192020
  2. ORCID (2026.). ORCID record: Feng Peng. ORCID.
    https://orcid.org/0000-0001-6501-5148
  3. Pre-straining cubic SiC nanopowders via ultrafast Joule-heating treatment to engineer stacking faults for hardness enhancement in high-pressure sintered ceramics.
    https://www.sciencedirect.com/science/article/abs/pii/S0955221926006795
  4. Global Physics Awards (2026.). Official Global Physics Awards Website.
    https://globalphysicsawards.com/

Marjan kamalian | Condensed Matter Physics | Innovative Research Award

Global Physics Awards

Marjan kamalian — Islamic Azad University
Marjan kamalian
Affiliation Islamic Azad University
Country Iran
Scopus ID 56707718800
Documents 13
Citations 89
h-index 5
Subject area Condensed Matter Physics
Event Global Physics Awards
ORCID 0000-0002-5392-4368

The Global Physics Awards article presents an academic recognition profile for Marjan kamalian of Islamic Azad University, Iran. The profile summarizes publicly linked scholarly identifiers, reported bibliometric indicators, and the researcher’s stated disciplinary association with condensed matter physics. The Scopus author record associated with Author ID 56707718800 reports 13 documents, 89 citations, and an h-index of 5.

Abstract

This article documents the scholarly profile of Marjan kamalian in connection with the Global Physics Awards. It identifies Islamic Azad University as the listed institutional affiliation and condensed matter physics as the stated subject area. Bibliometric information is presented as profile-based metadata and should be interpreted as subject to periodic revision by the respective indexing service.[1] [2]

Keywords

Marjan kamalian; Islamic Azad University; Iran; condensed matter physics; scholarly communication; bibliometrics; Scopus; ORCID; Global Physics Awards.

Introduction

Academic recognition pages commonly bring together institutional affiliation, persistent researcher identifiers, publication records, and citation indicators in order to provide a concise account of scholarly activity. In this context, the Global Physics Awards serves as the named event associated with this profile, while the linked Scopus and ORCID records provide avenues for reviewing source-based author information.[1][3]

Research Profile

Marjan kamalian is listed with Islamic Azad University in Iran. The available profile information places the researcher within condensed matter physics, a field concerned with the physical properties and collective behavior of materials in condensed phases. The linked ORCID record provides a persistent digital identifier intended to distinguish an individual researcher from others with similar names.[2]

Research Contributions

The researcher’s contribution profile is represented through the linked author record and associated scholarly identifiers. Within condensed matter physics, publication-based records support the documentation of research outputs, collaboration patterns, and subsequent scholarly use through citations. This article does not independently evaluate individual publications or make claims beyond the information represented in the linked records. [1]

Publications

The Scopus author profile reports 13 documents for the identified author record. Publication-level details, including titles, venues, authorship, publication dates, and digital object identifiers where assigned, may be consulted through the author profile and related publisher records. DOI links function as persistent identifiers for individual research outputs and should be used with the corresponding publication metadata.

Research Impact

The author record reports 89 citations and an h-index of 5. Citation indicators can offer a descriptive view of the visibility and uptake of indexed publications, but they vary with database coverage, indexing practices, publication age, and disciplinary citation behavior. They are therefore presented here as contextual indicators rather than as standalone measures of research quality. [2][4]

Award Suitability

The profile’s relevance to the Global Physics Awards is based on its stated association with condensed matter physics, an identifiable institutional affiliation, and publicly accessible researcher identifiers. Consideration for any award or recognition remains subject to the event’s formal eligibility criteria, review procedures, documentary requirements, and decisions of its authorized organizers.

Conclusion

Marjan kamalian’s academic profile, as represented by the linked Scopus and ORCID records, identifies a researcher affiliated with Islamic Azad University whose stated area is condensed matter physics. The reported author-level metrics provide a concise bibliometric snapshot, while the linked external resources enable readers to consult the underlying profile information and award website directly.[1] [2]

References

  1. Elsevier (2026). Scopus author details: Marjan kamalian, Author ID 56707718800. Scopus.
    https://www.scopus.com/pages/authors/56707718800
  2. ORCID (2026.). ORCID record: 0000-0002-5392-4368. ORCID.
    https://orcid.org/0000-0002-5392-4368
  3. Impact of hydrogen plasma treatment on ITO substrate for enhanced performance of CdS/CdTe solar cells.
    https://www.sciencedirect.com/science/article/abs/pii/S0921452624008020
  4. Global Physics Awards (2026.). Global Physics Awards. Official event website.
    https://globalphysicsawards.com/

Amjad Ali | Solid-State Physics | Best Research Article Award

Dr. Amjad Ali | Solid-State Physics | Best Research Article Award

University of Okara | Pakistan

Amjad Ali is recognized for his impactful research in solid-state physics, particularly in advancing energy materials for efficient fuel cell technologies. His work focuses on developing bismuth-doped perovskite anodes with improved conductivity, reduced band gap, and enhanced electrochemical performance. With 1,021 citations across 846 documents, 55 published works, and an h-index of 16, his contributions demonstrate strong academic influence. By optimizing material structure and enhancing oxygen vacancies, his research achieves better power density and stability at lower temperatures, supporting cleaner and more efficient energy systems.

Citation Metrics (Scopus)

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55

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View Orcid Profile
View Google Scholar Profile

Featured Publications

Yihao Cheng | Condensed Matter Physics | Research Excellence Award

Mr. Yihao Cheng | Condensed Matter Physics | Research Excellence Award

Jilin University | China

Cheng Yihao is a Master’s candidate in condensed matter physics with a strong background in applied physics. He demonstrates solid academic performance and expertise in core physics disciplines, along with research experience in aqueous zinc-ion battery materials. Skilled in material synthesis, characterization techniques, and electrochemical testing, he is proficient in tools like Origin, MATLAB, and Materials Studio. He possesses good programming abilities and strong English communication skills. With teaching assistant experience and active participation in academic and volunteer activities, he shows responsibility, teamwork, and dedication, complemented by a detail-oriented approach and a proactive attitude toward research and learning.

View Orcid Profile

Featured Publications


Real LiDAR Point Cloud Synthesis for 3D Object Detection in Snowy Weather

– Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, 2026

Wellington De Oliveira | Solid-State Physics | Research Excellence Award

Dr. Wellington De Oliveira | Solid-State Physics | Research Excellence Award 

University of Campinas | Brazil

Wellington Paulo de Oliveira is a postdoctoral researcher at the University of Campinas specializing in geomagnetism, paleomagnetism, and rock magnetism. His work focuses on understanding variations in Earth’s magnetic field across geological timescales, contributing valuable insights into paleointensity and magnetostratigraphy. He has participated in major research projects on South American geomagnetic history and has published multiple peer-reviewed articles, including in high-impact journals. His research has gained scientific visibility and has been presented at international conferences. He has 72 citations across 56 documents, with 8 publications and an h-index of 4.

Citation Metrics (Scopus)

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View Orcid Profile
View Google Scholar Profile

Featured Publications

Yifeng Hu | Solid-State Physics | Research Excellence Award

Prof. Yifeng Hu | Solid-State Physics | Research Excellence Award

Jiangsu University of Technology | China

Solid-State Physics is a professor and master’s supervisor specializing in information functional materials and thin-film devices, with a doctoral background in information functional materials and devices. Research focuses on phase-change materials, nano-multilayer thin films, superlattice-like structures, and flexible memory devices. He has led multiple national and provincial research projects, including several funded by the National Natural Science Foundation of China, and has secured over 1.5 million RMB in industry-supported horizontal projects. His work has resulted in extensive publications in high-impact international journals such as npj Flexible Electronics, Applied Physics Letters, IEEE Electron Device Letters, and Journal of Alloys and Compounds. He holds more than 20 authorized Chinese invention patents related to phase-change materials and memory technologies. In teaching, he delivers core physics and materials courses and has guided graduate and undergraduate students to numerous provincial and national innovation awards. His contributions have been recognized through multiple scientific research, teaching, and talent-development honors.

 

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Featured Publications

Huanming Chen | Condensed Matter Physics | Outstanding Scientist Award

Prof. Huanming Chen | Condensed Matter Physics | Outstanding Scientist Award

Ningxia University | China

Huanming Chen is a distinguished professor and researcher in materials science, with expertise spanning composite materials, superalloys, powder metallurgy, and computational materials science. He has held key academic positions, including vice dean and professor, and has extensive international experience as a visiting scholar at universities in the USA, UK, and Australia. His research integrates experimental and computational approaches, focusing on electronic, mechanical, optical, and magnetic properties of intermetallic compounds, doped semiconductors, and heterostructures. He has made significant contributions to photocatalysis, ferroelectricity, and electroless coating technologies, advancing understanding of microstructure-property relationships in advanced materials. Chen has an extensive publication record in high-impact journals, demonstrating expertise in first-principles calculations, phase-field simulations, and materials design. He also teaches electromagnetic fields, magnetic waves, and mathematical methods of physics, combining deep theoretical knowledge with practical materials research, fostering interdisciplinary collaboration in materials science and engineering.

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Featured Publications

Giovanni Ciccotti – Condensed Matter Physics – Best Researcher Award 

Prof. Giovanni Ciccotti - Condensed Matter Physics - Best Researcher Award 

University Rome Sapienza - Italy

Author Profile

Scopus

Google Scholar

🎓 Early Academic Pursuits

Prof. Giovanni Ciccotti's academic journey began with a strong foundation in condensed matter physics, culminating in a Laurea in Physics cum laude from the University of Roma “La Sapienza” in 1967. His early research was rooted in theoretical physics, particularly within the High Energy Theoretical Group at Rome 1 Physics Department, where he held a CNR Fellowship from 1968 to 1971. These formative years established his expertise in computational physics and statistical mechanics, paving the way for his later groundbreaking contributions to condensed matter physics.

💼 Professional Endeavors

Throughout his distinguished career, Prof. Ciccotti held various prestigious academic and research positions across the globe. He served as a Professore Ordinario of Structure of Matter at the University of Roma "La Sapienza" from 1990 to 2014 and played a pivotal role in molecular physics research. His tenure at institutions such as University College Dublin, Université de Paris VI, and MIT reinforced his reputation as a global leader in condensed matter physics. Additionally, his involvement with the Centre Européen de Calcul Atomique et Moléculaire (CECAM) and CNRS in France demonstrated his commitment to advancing computational methodologies in physics.

🔬 Contributions and Research Focus

Prof. Ciccotti’s research has significantly influenced condensed matter physics, with key contributions in molecular dynamics simulations, statistical mechanics, and atomistic simulations. His pioneering work in computational physics has led to advancements in the understanding of the structure of matter, phase transitions, and complex molecular systems. His collaborations with international institutions and his role as a recipient of the Berni J. Alder CECAM Prize highlight his contributions to numerical methods in molecular simulations. His courses in Atomistic Simulations and Advanced Simulations have been instrumental in training new generations of physicists.

🌍 Impact and Influence

The impact of Prof. Ciccotti’s work is evident in his widespread recognition and numerous honors, including being named a Fellow of the European Physical Society and the Institute of Physics. His Schlumberger Lecture at the University of Cambridge and his position as a Visiting Fellow at Corpus Christi College underscore his influence in the scientific community. His leadership in the creation of a computerized library catalogue for the University of Roma further demonstrates his dedication to academic development.

🏆Academic Cites

Prof. Ciccotti's extensive body of work has been widely cited in scientific literature, solidifying his status as a thought leader in condensed matter physics. His publications have been referenced extensively in studies related to molecular simulations, computational physics, and statistical mechanics. His role as a guest scientist and visiting professor across multiple institutions has further amplified the reach and impact of his research.

🌟 Legacy and Future Contributions

As an Emeritus Professor at "La Sapienza" and UCD, Prof. Ciccotti's legacy is firmly established in the field of condensed matter physics. His groundbreaking research in molecular simulations and statistical mechanics continues to inspire new research directions. His contributions to advanced computational techniques ensure that future generations of physicists will build upon his pioneering work. His involvement in academic institutions worldwide guarantees that his influence in theoretical and computational physics will persist for years to come.

📝Notable Publication


📝A NEMD approach to the melt-front evolution under gravity

Authors: M. Ferrario, Mauro; G. Ciccotti, Giovanni; D. Mansutti, D.; A. DiCarlo, Antonio

Journal: Journal of Chemical Physics

Year: 2025

Citations: 0


📝Nucleation of multi-species crystals: methane clathrate hydrates, a playground for classical force models

Authors: M. Lauricella, Marco; G. Ciccotti, Giovanni; S. Meloni, Simone

Journal: Molecular Physics

Year: 2024

Citations: 0


📝A correct, reversible Trotter splitting for the evolution operator in molecular dynamics simulations of molecular systems with constraints

Authors: C.D. de Michele, Cristiano D.; G. Ciccotti, Giovanni

Journal: Molecular Physics

Year: 2024

Citations: 0


📝Effect of coarse graining in water models for the study of kinetics and mechanisms of clathrate hydrates nucleation and growth

Authors: M. Lauricella, Marco; S. Meloni, Simone; G. Ciccotti, Giovanni

Journal: Journal of Chemical Physics

Year: 2023

Citations: 4


📝Regularized Bennett and Zwanzig free energy estimators

Authors: S. Decherchi, Sergio; G. Ciccotti, Giovanni; A. Cavalli, Andrea

Journal: Journal of Chemical Physics

Year: 2023

Citations: 1


📝Continuum mechanics from molecular dynamics via adiabatic time and length scale separation

Authors: A. DiCarlo, Antonio; S. Bonella, Sara; M. Ferrario, Mauro; G. Ciccotti, Giovanni

Journal: Letters in Mathematical Physics

Year: 2023

Citations: 3