Guo Ying | Engineering | Best Researcher Award

Best Researcher Award

Guo Ying
Zhongyuan University of Technology

Guo Ying
Affiliation Zhongyuan University of Technology
Country China
Scopus ID 59836544400
Documents 32
Citations 491
h-index 14
Subject Area Engineering
Event International Research Hypothesis Excellence Award

Guo Ying is a researcher affiliated with Zhongyuan University of Technology in China whose documented scholarly record includes research in engineering, with particular activity in optical fiber and thulium-doped fiber laser technologies. The available bibliographic information identifies 32 documents, 491 citations, and an h-index of 14 in the supplied Scopus profile information. These indicators provide a quantitative overview of research output and citation visibility, while individual publications provide additional context concerning research themes and technical contributions.[1]

Abstract

The Best Researcher Award profile for Guo Ying summarizes a research record associated with Zhongyuan University of Technology and the engineering discipline. The supplied bibliographic record indicates 32 documents, 491 citations, and an h-index of 14, providing measurable indicators of publication activity and scholarly visibility.[1] Recent listed publications address thulium-doped fiber lasers, single-longitudinal-mode operation, wavelength tuning, narrow-linewidth performance, optical signal-to-noise characteristics, and composite mode-selection approaches. These studies are situated within the broader development of fiber-optic and laser technologies.[2] [3] [4]

Keywords

Guo Ying; Best Researcher Award; Zhongyuan University of Technology; Engineering; optical fiber technology; thulium-doped fiber laser; 2 μm wavelength; single-longitudinal-mode laser; narrow-linewidth laser; wavelength-tunable laser; gain switching; composite mode selection.

Introduction

Research in optical fiber technologies encompasses the design, characterization, and application of optical fibers, fiber-based light sources, and related photonic systems. Thulium-doped fiber lasers operating around the 2 μm region are of interest for applications and research involving infrared photonics because their spectral region supports specialized sensing, communications, and laser-system investigations. The publications supplied for Guo Ying’s profile focus on experimental laser architectures and methods for controlling longitudinal modes, linewidth, wavelength, and output characteristics.[2] [3]

Research Profile

The supplied research profile places Guo Ying within Engineering and associates the researcher with Zhongyuan University of Technology, China. The reported Scopus author identifier is 59836544400. The supplied metrics are 32 documents, 491 citations, and an h-index of 14.[1] Citation counts and h-index values are bibliometric measures that can change as databases are updated, and therefore should be interpreted as time-dependent indicators rather than permanent characteristics of a research career.[2] [3] [4]

Research Contributions

The supplied publication record identifies several related technical contributions in thulium-doped fiber laser research. The first listed article reports an experimental demonstration of a stable gain-switched single-longitudinal-mode thulium-doped fiber laser in the 2 μm wavelength region. Its stated emphasis on stable operation and longitudinal-mode control reflects an engineering approach to improving the spectral behavior of fiber lasers.[2][3]

Publications

The following publications are included in the supplied research record. The bibliographic details are presented as provided and should be cross-checked against the relevant publisher and indexing records for definitive metadata.

The three supplied articles were listed with zero citations in the source material at the time represented by the provided record. This article does not infer citation performance for the individual papers beyond the information supplied. The overall Scopus citation and h-index figures are reported separately in the researcher profile.[1]

Research Impact

Research impact can be considered through multiple dimensions, including publication output, citation activity, technical relevance, reproducibility, and contribution to a research community. The supplied Scopus indicators of 32 documents, 491 citations, and an h-index of 14 provide quantitative evidence of scholarly visibility within the indexed record.[1]

Award Suitability

The Best Researcher Award recognizes a research profile that can be evaluated through scholarly productivity, research relevance, publication quality, citation visibility, and demonstrated contributions to a field. Based on the information supplied for Guo Ying, the profile contains measurable bibliometric indicators together with recent publications in specialized engineering journals.[1]

  • Documented research activity within Engineering and optical fiber technologies.
  • A reported Scopus record comprising 32 documents, 491 citations, and an h-index of 14.[1]

Conclusion

Guo Ying’s supplied academic profile represents an engineering researcher associated with Zhongyuan University of Technology whose documented work includes research on thulium-doped fiber lasers and related optical-fiber technologies. The reported bibliometric indicators and publication record provide a basis for assessing scholarly productivity and research visibility, while the recent articles demonstrate continued activity in experimental fiber-laser engineering.[1] [2] [3] [4]

References

  1. Elsevier. (n.d.). Scopus author details: Guo Ying, Author ID 59836544400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59836544400
  2. Qin, Q., Liu, P., Liu, S., et al. (2026). Experimental demonstration of a stable gain-switched single-longitudinal-mode thulium-doped fiber laser at 2 μm wavelength region. Optical Fiber Technology.
  3. Xu, J., Yan, F., Li, T., et al. (2026). High-OSNR narrow-linewidth single-longitudinal-mode thulium-doped fiber laser enabled by composite mode selection. Infrared Physics and Technology.
  4. Qin, Q., Liu, P., Guan, B., et al. (2026). Investigation of UHNA fiber assisted wavelength tunable thulium-doped fiber laser. Infrared Physics and Technology.

Dr. Fan Li | Engineering | Research Excellence Award

Dr. Fan Li | Engineering | Research Excellence Award

Senior Engineer | Shandong Hi-Speed Group Innovation Research Institute | China

Dr. Fan Li is a researcher in underground engineering with expertise in the stability of surrounding rock in deep caverns and tunnels. Holding a Ph.D. in engineering, his work focuses on failure mechanisms, particularly splitting failure in high sidewall caverns under complex stress conditions. He applies experimental methods, physical modeling, and numerical simulation to analyze rock behavior and support systems. His contributions enhance understanding of failure mode transformation, anchoring effects, and lining–rock interaction. With 11 publications, 91 citations, 11 documents, and an h-index of 5, his research supports safer and more efficient geotechnical and underground engineering practices.

View Scopus Profile
     View Orcid Profile

Featured Publications

Xiaolan Qiu | Engineering and Technology | Best Researcher Award

Xiaolan Qiu | Engineering and Technology | Best Researcher Award

Prof Xiaolan Qiu, Aerospace Information Research Institute, Chinese Academy of Sciences, China

Based on the information provided, Prof. Xiaolan Qiu appears to be an outstanding candidate for the Best Researcher Award. Here are key reasons for this recommendation, formatted with paragraph headings for clarity:

Publication profile

google scholar

Academic Qualifications

Prof. Qiu holds a Ph.D. in Signal and Information Processing from the Graduate School of the Chinese Academy of Sciences. Her doctoral research focused on advanced imaging algorithms for bistatic Synthetic Aperture Radar (SAR), demonstrating her deep understanding of complex signal processing.

Research Experience

With extensive experience in spaceborne SAR data processing, Prof. Qiu has been involved in significant projects since 2006. She played a critical role in developing data processing systems for China’s first SAR satellite, CRS-1, and has led teams responsible for various SAR satellites, including Gaofen-3. Her current leadership in managing data processors for upcoming SAR satellites underscores her pivotal role in advancing SAR technology.

Publications and Contributions

Prof. Qiu has a robust publication record, contributing to various journals such as IEEE Transactions on Geoscience and Remote Sensing. Her works on bistatic SAR algorithms, SAR image analysis, and polarimetric data processing are highly cited and reflect her contributions to the field of remote sensing. Notable papers include “An improved NLCS algorithm with capability analysis for one-stationary BiSAR” and “Focusing of medium-earth-orbit SAR with advanced nonlinear chirp scaling algorithm.”

Awards and Recognitions

Prof. Qiu has received several prestigious awards, including the Outstanding Scientific and Technological Achievement Award from the Chinese Academy of Sciences in 2016 and the Wang Kuancheng Education Foundation award for Outstanding Woman Scientists in 2010. These honors signify her influence and recognition in the scientific community.

Leadership and Collaboration

As a deputy director of the Key Laboratory of GIPAS at the Institute of Electronics, Chinese Academy of Sciences, Prof. Qiu demonstrates strong leadership in guiding research initiatives and fostering collaboration within the academic and scientific communities. Her role as a project leader for SAR data processing and analysis showcases her ability to manage complex research projects effectively.

Conclusion

Prof. Xiaolan Qiu’s impressive educational background, extensive research experience, high-impact publications, numerous accolades, and leadership in significant research projects make her a highly deserving candidate for the Best Researcher Award. Her contributions not only advance the field of signal and information processing but also enhance the capabilities of SAR technology in various applications.

Publication top notes

An improved NLCS algorithm with capability analysis for one-stationary BiSAR

Some reflections on bistatic SAR of forward-looking configuration

Focusing of medium-earth-orbit SAR with advanced nonlinear chirp scaling algorithm

Synthetic aperture radar three-dimensional imaging——from TomoSAR and array InSAR to microwave vision

Preliminary exploration of systematic geolocation accuracy of GF-3 SAR satellite system

An Omega-K algorithm with phase error compensation for bistatic SAR of a translational invariant case

Urban 3D imaging using airborne TomoSAR: Contextual information-based approach in the statistical way

SRSDD-v1. 0: A high-resolution SAR rotation ship detection dataset

Projection shape template-based ship target recognition in TerraSAR-X images

A novel motion parameter estimation algorithm of fast moving targets via single-antenna airborne SAR system