Umesh Chandra Srivastava | Physics and Astronomy | Best Faculty Award

Best Faculty Award

Umesh Chandra Srivastava
Amity Institute of Applied Sciences, Noida-UP,

Umesh Chandra Srivastava
Affiliation Amity Institute of Applied Sciences, Noida-UP
Country India
Scopus ID 36616641200
Documents 16
Citations 51
h-index 5
Subject Area Physics and Astronomy
Event International PopularScientist Awards
ORCID 0000-0003-1912-0865

Umesh Chandra Srivastava is affiliated with the Amity Institute of Applied Sciences, Noida-UP, India, and is associated with the subject area of Physics and Astronomy. The academic recognition profile presented here is prepared in the context of the International PopularScientist Awards, using the supplied researcher metrics and bibliographic information from Scopus and related publication records.These indicators provide a quantitative view of indexed research activity and scholarly visibility, while the assessment of a Best Faculty Award also requires consideration of research contribution, academic relevance, originality, and broader scholarly impact. [1]

Abstract

The Best Faculty Award profile recognizes the academic and research standing of Umesh Chandra Srivastava, affiliated with the Amity Institute of Applied Sciences, Noida-UP, India, in the field of Physics and Astronomy. The supplied Scopus profile records 16 documents, 51 citations, and an h-index of 5. [1] The evaluation framework considers these bibliometric indicators alongside the relevance and scholarly character of the available research record. The supplied publication data include research concerning biomaterials, tissue-expansion materials, laser-based therapeutic applications, nanocrystalline materials, and photodynamic treatment approaches.

Keywords

Keywords: Best Faculty Award; Umesh Chandra Srivastava; Physics and Astronomy; academic recognition; research excellence; Scopus; scholarly impact; scientific research; Amity Institute of Applied Sciences; International PopularScientist Awards.

Introduction

Faculty recognition in research-intensive academic environments commonly considers a combination of scholarly productivity, citation performance, research relevance, and evidence of sustained contribution to a discipline. Bibliometric indicators can provide useful quantitative evidence of research visibility, although they are most informative when interpreted alongside publication quality, disciplinary context, and the nature of individual scholarly contributions. [1]

Research Profile

The supplied Scopus information reports 16 indexed documents, 51 citations, and an h-index of 5. These measures indicate an established indexed publication record with measurable citation activity. The h-index combines productivity and citation dimensions and should be interpreted within the norms of the relevant discipline, publication age, and research specialty rather than as a standalone measure of academic quality. [1The combination of indexed documents, citations, and h-index provides a compact representation of the supplied research profile.

Research Contributions

The supplied bibliographic records span several areas of applied scientific research. These include hydrogel tissue expanders based on methacrylate polymers, clinical treatment procedures for infantile hemangiomas, laser-based approaches to pain treatment, up-converting YF3:YbEr nanocrystals, and fractional carbon dioxide laser treatment combined with photodynamic therapy. [3] [4] [5]

Publications

The supplied bibliographic records include journal articles covering topics in biomaterials, clinical treatment, laser applications, nanomaterials, and dermatological therapy. The following entries reproduce the supplied publication information and contributor metadata.

Hydrogel tissue expanders for stomatology. Part I. Methacrylate-based polymers. Journal of Materials Science: Materials in Medicine, 2017. Journal article.[3]

Infantile hemangiomas. Current treatment procedures | Infantilní hemangiomas. Současné tělečné protředky. Czech-Slovak Pediatrics, 2017. Journal article. EID: 2-s2.0-85027991512. Contributors: Malis, J.; Stara, V.; Blahova, K.; Bučkova, H.; Faberova, R.; Šterba, J.; Klovrzova, S.; Kynčl, M.; Černy, M.; Hrdlička, R. et al. [4]

Direct and indirect treatment of pain with lasers – Update 2016. Disease, 2016. Journal article. EID: 2-s2.0-84992323214. Contributors: Šmucler, R.; Jenčová, J. [5]

Research Impact

The supplied quantitative indicators show 51 citations across 16 documents and an h-index of 5. Citation counts can provide evidence of scholarly uptake, while the h-index offers a combined measure of publication productivity and citation influence. [1] The figures should be understood as a snapshot of the supplied indexed profile and may change as databases are updated.

Award Suitability

The Best Faculty Award is intended to recognize academic professionals whose scholarly record and faculty-level contributions demonstrate meaningful engagement with research and academic development. Based on the supplied information, Umesh Chandra Srivastava has an indexed Scopus profile associated with Physics and Astronomy, together with 16 documents, 51 citations, and an h-index of 5. [1]

Conclusion

Umesh Chandra Srivastava’s supplied academic profile presents an indexed research record in Physics and Astronomy, with 16 documents, 51 citations, and an h-index of 5. The profile is associated with the Amity Institute of Applied Sciences, Noida-UP, India, and includes persistent Scopus and ORCID identifiers. [1] [2]

References

  1. Elsevier. (n.d.). Scopus author details: Umesh Chandra Srivastava, Author ID 36616641200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=36616641200
  2. ORCID. (n.d.). ORCID record: 0000-0003-1912-0865. ORCID.
    https://orcid.org/0000-0003-1912-0865
  3. Hrib, J., Sirc, J., Lesny, P., Hobzova, R., Duskova-Smrckova, M., Michalek, J., & Smucler, R. (2017). Hydrogel tissue expanders for stomatology. Part I. Methacrylate-based polymers. Journal of Materials Science: Materials in Medicine.
    10.1007/s10856-016-5818-y.
  4. Bartůněk, V., Rak, J., Pelánková, B., Junková, J., Mezlíková, M., Král, V., Kuchař, M., Engstová, H., Ježek, P., & Šmucler, R. (2016). Large scale preparation of up-converting YF3:YbEr nanocrystals with various sizes by solvothermal syntheses using ionic liquid bmimCl. Journal of Fluorine Chemistry.
    10.1016/j.jfluchem.2016.05.015.
  5. Lippert, J., Šmucler, R., & Vlk, M. (2013). Fractional carbon dioxide laser improves nodular basal cell carcinoma treatment with photodynamic therapy with methyl 5-aminolevulinate. Dermatologic Surgery.
    10.1111/dsu.12242.

Muhammad Noman | Quantum Science | Best Researcher Award

Best Researcher Award

Muhammad Noman
Quantum Science
Muhammad Noman
Affiliation Quantum Science
Country China
Scopus ID 59308497300
Documents 25
Citations 209
h-index 7
Subject Area Quantum Science
Event International Popular Scientist Awards
ORCID 0009-0003-6136-0114

Muhammad Noman   the Best Researcher Award profile recognizes the research record of Muhammad Noman in the field of quantum science, with a publication portfolio addressing quantum information, open quantum systems, non-Markovian dynamics, quantum metrology, neutrino oscillations, dephasing, and related theoretical physics topics. The supplied bibliographic record reports 25 indexed documents, 209 citations, and an h-index of 7. [1]

Abstract

Muhammad Noman’s reported research profile is centered on theoretical and computational problems in quantum science and mathematical physics. The listed publications demonstrate engagement with quantum coherence, dephasing, non-Markovian memory, entanglement dynamics, quantum metrology, qubit and qutrit systems, neutrino oscillations, and quantum optical phenomena. Recent publications in 2026 include studies of Fisher-ridge operation in nonlinear non-Hermitian gyroscopes, flavor coherence in three-flavor neutrino qutrits, non-Markovian memory and multi-time metrology, coupled NV-center qutrits, systematic bias in long-baseline neutrino oscillation parameters, and amplitude-damping dynamics. [2] [3] [4]

Keywords

Quantum Science; Quantum Information; Non-Markovian Dynamics; Quantum Coherence; Quantum Metrology; Qubit; Qutrit; Dephasing; Entanglement; Neutrino Oscillations; Quantum Optics; Non-Hermitian Physics; NV Centers; Theoretical Physics; Best Researcher Award.

Introduction

Quantum science encompasses a broad range of research concerned with quantum states, interactions, information processing, measurement, and the behavior of physical systems at microscopic scales. Within this area, the study of open quantum systems examines how interaction with an environment modifies coherence, correlations, and measurable quantum properties. Non-Markovian effects are particularly relevant because environmental memory can produce departures from simple irreversible dynamics and may result in revivals of quantum correlations or altered metrological performance. The publication record supplied for Muhammad Noman contains multiple works addressing these themes. [5]

Research Profile

The supplied research metrics identify Muhammad Noman with Scopus Author ID 59308497300 and report 25 documents, 209 citations, and an h-index of 7. These indicators provide a quantitative snapshot of indexed scholarly output and citation activity at the time represented by the supplied profile information. [1]

Research Contributions

A prominent theme in the supplied publication record is the characterization of quantum systems subjected to environmental noise and memory effects. The work on non-Markovian memory considers entanglement revivals and multi-time metrology in a qubit pseudomode channel, while another study examines dephasing and flavor coherence in a three-flavor neutrino qutrit. These subjects connect fundamental questions concerning quantum information preservation with theoretical descriptions of open-system dynamics. [3] [4]

Publications

The following publications are included in the supplied bibliographic record. Dates and journal information are reproduced from the provided source material.

  1. Squeezing-assisted Fisher-ridge operation in a nonlinear non-Hermitian gyroscope. Chaos, Solitons & Fractals, 2026-11.
  2. Non-Markovian Dephasing and Flavor Coherence in a Three-Flavor Neutrino Qutrit. International Journal of Theoretical Physics, 2026-08-04
  3. Operational Signatures of Non-Markovian Memory: Entanglement Revivals and Multi-Time Metrology in a Qubit Pseudomode Channel. Annalen der Physik, 2026-07.
  4. Visibility thresholds and quantum advantage time for coupled NV-center qutrits under dephasing. Laser Physics Letters, 2026-07-06.

Research Impact

The supplied profile reports 209 citations and an h-index of 7 across 25 indexed documents. These metrics indicate that the research has received measurable citation activity within the indexed scholarly literature. [1] The publication record also shows recurring collaboration with researchers working on quantum dynamics, neutrino theory, optical physics, and related areas. Such collaboration can facilitate the exchange of theoretical approaches across specialized areas of quantum science.

Award Suitability

On the basis of the information supplied for this profile, Muhammad Noman’s research record presents characteristics relevant to consideration for a Best Researcher Award in the quantum science category. The reported publication and citation indicators provide measurable evidence of scholarly activity, while the listed research topics demonstrate sustained engagement with contemporary theoretical problems in quantum physics. [1]

Conclusion

Muhammad Noman’s supplied research profile reflects an active scholarly focus on quantum science and theoretical physics. The combination of reported bibliometric indicators and publications addressing quantum coherence, non-Markovian memory, quantum metrology, neutrino oscillations, qutrit dynamics, dephasing, and quantum optical phenomena provides a substantive basis for academic recognition. The Best Researcher Award profile therefore presents the researcher as a candidate whose work can be evaluated within the broader context of contemporary theoretical and quantum science research.

References

  1. Elsevier. (n.d.). Scopus author details: Muhammad Noman, Author ID 59308497300. Scopus.
    https://www.scopus.com/pages/authors/59308497300
  2. Crossref. (2026). Squeezing-assisted Fisher-ridge operation in a nonlinear non-Hermitian gyroscope. Chaos, Solitons & Fractals.
    https://doi.org/10.1016/j.chaos.2026.118983
  3. Crossref. (2026). Non-Markovian Dephasing and Flavor Coherence in a Three-Flavor Neutrino Qutrit. International Journal of Theoretical Physics.
    https://doi.org/10.1007/s10773-026-06429-8
  4. Crossref. (2026). Operational Signatures of Non-Markovian Memory: Entanglement Revivals and Multi-Time Metrology in a Qubit Pseudomode Channel. Annalen der Physik.
    https://doi.org/10.1002/andp.70249
  5. Crossref. (2026). Visibility thresholds and quantum advantage time for coupled NV-center qutrits under dephasing. Laser Physics Letters.
    https://doi.org/10.1088/1612-202x/ae8167