Chih Lung Tseng | Optics | Innovative Research Award

Innovative Research Award

Chih Lung Tseng – National Taitung University
Chih Lung Tseng
Affiliation National Taitung University
Country Taiwan
Scopus ID 24177595400
Documents 18
Citations 143
h-index 3
Subject Area Optics
Event International Research Data Analysis Excellence & Awards
ORCID 0009-0009-6347-5752

The Innovative Research Award article presents an academic overview of Chih Lung Tseng of National Taitung University, Taiwan. The profile is associated with research activity in optics and summarizes selected bibliometric indicators, scholarly identity records, and recognition considerations within the context of the International Research Data Analysis Excellence & Awards. [1]

Abstract

This article summarizes the academic profile of Chih Lung Tseng, affiliated with National Taitung University, with particular reference to optics-related scholarly activity. Available profile indicators include 18 documents, 143 citations, and an h-index of 3, providing a concise basis for academic recognition assessment. [1]

Keywords

Innovative Research Award; Chih Lung Tseng; National Taitung University; optics; scientific research; scholarly publications; citation analysis; research impact; academic recognition; International Research Data Analysis Excellence & Awards. [2]

Introduction

Academic recognition commonly considers research productivity, scholarly visibility, subject relevance, and evidence of sustained contribution. Chih Lung Tseng’s profile at National Taitung University is presented through available bibliometric and researcher-identification records, offering a concise context for evaluating scholarly activity in optics and related research areas. [3]

Research Profile

Chih Lung Tseng is affiliated with National Taitung University in Taiwan and is associated with scholarly work categorized within optics. The available Scopus author record identifies 18 documents, 143 citations, and an h-index of 3, while the ORCID identifier supports persistent researcher identification.[2]

Research Contributions

The research profile indicates continued scholarly participation through publications indexed within a major academic database. Contributions associated with the optics subject area may support disciplinary knowledge through documented research outputs, collaboration, and dissemination. Assessment of contribution is appropriately based on available indexed records and persistent researcher information. [1]

Publications

The available Scopus profile reports 18 indexed documents associated with the researcher. These publications constitute the documented scholarly output used in this overview. Individual publication details, including article titles, journals, authorship, and DOI records, should be verified through the corresponding author and publisher records. [3]

Research Impact

Available bibliometric indicators report 143 citations and an h-index of 3. These measures provide one perspective on scholarly visibility and citation activity, although citation indicators vary across disciplines, publication periods, and database coverage. They are therefore considered alongside research context and documented outputs. [1]

Award Suitability

The documented research profile demonstrates identifiable scholarly activity, indexed publications, citation evidence, and a persistent researcher identifier. These elements provide relevant information for consideration within an academic recognition framework. Final award suitability should depend on the event’s formal eligibility criteria, review standards, verification procedures, and comparative evaluation process.[3]

Conclusion

Chih Lung Tseng’s available academic profile reflects documented research activity in optics, supported by indexed publications, citation records, and persistent scholarly identification. The Innovative Research Award overview provides a structured summary of these indicators while recognizing that comprehensive academic evaluation requires verification of achievements and formal review criteria.[2]

References

  1. A Low-Power 3-Gb/s PRBS Generator Using an Improved TSPC D-Type Flip-Flop in 0.18 µm CMOS Technology.
    https://link.springer.com/article/10.1007/s00034-025-03482-2
  2. Physics-Constrained Multiresolution Adam Optimization for Inverse Reconstruction of TPP-Fabricated Waveguide Index Profiles from Near-Field Intensity Measurements
    https://www.researchgate.net/publication/412982496_Physics-Constrained_Multiresolution_Adam_Optimization_for_Inverse_Reconstruction_of_TPP-Fabricated_Waveguide_Index_Profiles_from_Near-Field_Intensity_Measurements
  3. All-digital cost-efficient CMOS pulse-expanded temperature sensor with digital set-point programming.
    https://www.researchgate.net/publication/403054082_All-digital_cost-efficient_CMOS_pulse-expanded_temperature_sensor_with_digital_set-point_programming

Weiqi Huang | Machine Learning and AI Applications | Best Researcher Award

Prof. Weiqi Huang | Machine Learning and AI Applications | Best Researcher Award

 Guizhou University | China

Author Profile

Scopus

🔍 Summary

Professor Huang Weiqi is a distinguished second-level professor at Guizhou University, China. He is also a visiting professor at the Department of Physics, Aarhus University and a senior visiting scholar at the Niels Bohr Institute, University of Copenhagen. His expertise lies in semiconductor physics, condensed matter optics, laser physics, and nanomaterials, making him a prominent figure in modern physical science and engineering.

🎓 Education

Professor Huang holds a doctorate in physics (institution details not specified). His academic background forms the foundation of his research in applied physics, optoelectronics, and nanotechnology.

💼 Professional Experience

He has held leading academic roles both in China and abroad, currently serving at Guizhou University while maintaining research affiliations with institutions in Denmark. He acts as a review expert for the Academic Degrees Center of the Ministry of Education and is a peer reviewer for the National Natural Science Foundation of China, having led six national-level projects.

📚 Academic Citations & Recognition

With over 100 peer-reviewed publications in top journals such as Applied Physics Letters (APL), Scientific Reports (SR), Optics Letters (OL), Nanoscale (NSL), and Applied Surface Science (ASS), Professor Huang’s research is internationally recognized. He serves as a journal reviewer for the Nature Publishing Group, Materials Today (Q1), and Nanomaterials (Q2). He has received both the Second Prize and Third Prize of the Provincial Scientific and Technological Progress Award as first recipient.

🛠️ Technical Skills

His strengths include computational modeling, semiconductor device design, laser system engineering, optical simulations, and nanofabrication. He is also skilled in integrating theoretical physics with experimental methods in cutting-edge research.

👨‍🏫 Teaching Experience

Professor Huang teaches graduate-level courses including Computational Physics, Condensed Matter Optics, and Advanced Laser Physics, as well as senior undergraduate courses such as Electrodynamics and Nonlinear Optics. He has supervised 2 PhD students and 32 master’s students, actively contributing to graduate education and academic mentorship.

🔬 Research Interests

His research spans semiconductor nanostructures, laser-matter interactions, quantum optics, and photonic device fabrication. He is particularly interested in exploring nanomaterials for next-generation optoelectronic applications.

📄 Patents

Professor Huang holds 8 authorized invention patents, including:

  1. All-silicon quantum dot nanolaser and its preparation method – Patent No. 1075471

  2. Multilayer all-silicon luminescent material and its preparation method – Patent No. 2687724

  3. Microstructure magnification device using reflective Talbot effect imaging – Patent No. 3009086

📖Publications

Band gap transition characteristics for emission on (GeSn)n/Si superlattice

Year: 2025
 Electron spin states embedded in localized states for opening spin levels effect in silicon nanowires doped with impurities
Year: 2025
Emission cells with quantum dots on silicon chip prepared by using fs pulsed laser
Year: 2024
Spin Splitting and Band Gap Structure in Si[110] Nanowires Doped with Impurities

Year: 2024
 Edge Electronic States and Direct Bandgap in Si Nanostructures on Silicon Oxide

Year: 2024
Influence of Silicon Oxide Layer Thickness on Electronic State Structure and Optical Properties of Si/SiO₂ Interface
Year: 2023