Chaochao Shen | Fiber Optics | Research Excellence Award

Dr. Chaochao Shen | Fiber Optics |Research Excellence Award

Student | Shanghai Institute of Optics | China

Chaochao Shen is a researcher at the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, with expertise in optical and electrical engineering–related interdisciplinary research. He holds advanced academic training in engineering and applied physical sciences, with specialization aligned to optics, photonic systems, and related technologies. His professional experience includes active involvement in collaborative research projects, multidisciplinary teamwork, and scholarly contributions within a leading national research institute. His research focuses on advanced optical and optoelectronic systems, with peer-reviewed publications indexed in Scopus and demonstrated citation impact, reflecting the relevance of his work to the scientific community. He has collaborated with an international network of researchers and maintains an active Scopus author profile. His scholarly metrics include four Scopus-indexed documents, one citation, and an h-index of one.

Citation Metrics (Scopus)

4
3
2
1
0

Citations

1

Documents

4

h-index

1

Citations

Documents

h-index

View Scopus Profile View Google Scholar

Featured Publications

Surface-mode induced high birefringence in a low-loss 7-cell photonic bandgap hollow-core fiber
C Shen, D Wu, X Zhu, S Chen, F Yu
Optical Fiber Technology, 95, 104416

Demonstration of tuning thermal coefficient of delay of photonic bandgap hollow-core fiber by surface mode
C Shen, D Wu, X Zhu, S Chen, B Lu, H Li, F Yu, X Chen, J Knight
Optical Fiber Technology, 95, 104429

High numerical-aperture solarization-resistant silica-glass air-cladding fiber bundle for the ultraviolet imaging
B Xu, C Shen, H Shen, Y Zang, Y Wang, Y Liu, X Lin, F Yu
IEEE Photonics Journal

Tuning of birefringence and thermal coefficient of delay of photonic bandgap hollow-core fiber by surface modes
C Shen, F Yu, J Knight
24th International Conference on Transparent Optical Networks (ICTON), 1-1, 2024

Yixian Dong | Optoelectronic Devices | Research Excellence Award

Assoc. Prof. Dr. Yixian Dong | Optoelectronic Devices | Research Excellence Award

Associate Professor | Southwest Jiaotong University | China

Yixian Dong is an Associate Professor in the School of Information Science and Technology at Southwest Jiaotong University, China, with expertise in optical communications, integrated photonics, and photonic neural networks. He earned a PhD in Electronic Engineering specializing in advanced optical networking, a master’s degree in Optical Engineering, and a bachelor’s degree in Optoelectronic Information Engineering. His professional experience includes academic appointments, leadership of nationally and provincially funded research projects, and participation in large-scale collaborative programs and industry-linked research initiatives. His research focuses on optical integration, photonic reservoir computing, digital signal processing, and converged optical–wireless networks, resulting in 41 peer-reviewed publications with 325 citations and an h-index of 10. He has received multiple competitive talent and fellowship awards, actively serves as a reviewer and conference committee member for leading journals and international conferences, and maintains strong professional memberships and academic service credentials.

Citation Metrics (Scopus)

325
200
100
0

Citations

325

Documents

41

h-index

10

Citations

h-index

View Scopus Profile View ORCID Profile

Featured Publications

Dr. Yong Bai | Photonic & Optoelectronic Devices | Innovative Research Award

Dr. Yong Bai | Photonic & Optoelectronic Devices | Innovative Research Award

Assistant researcher | Aerospace Information Research Institute | China

Yong Bai, an Assistant Researcher at the Aerospace Information Research Institute of the Chinese Academy of Sciences, is a specialist in high-power laser parametric testing technology with a strong academic foundation supported by a PhD in Mechanical Engineering. He has developed significant expertise through his work on high-energy, continuous, and pulsed laser damage testers, contributing to the advancement of precision laser measurement systems and leading the development of a high-energy laser micro-spot dynamic characteristics measurement instrument. His professional experience includes multiple research projects, industry-related consultancy activities, and the creation of several patented or patent-pending technologies, reflecting both technical capability and a commitment to innovation. His research focuses on high-power laser diagnostic methods, emphasizing accuracy, anti-damage probe design, and solutions to nonlinear distortion challenges in complex laser environments. He has authored numerous publications in reputable indexed journals and serves as an editorial reviewer, demonstrating active engagement with the scientific community. His notable contribution includes proposing a highly anti-damage probe based on a micro-porous cavity structure combined with high-precision scattered-light sampling technology, significantly improving the reliability of high-energy laser testing. Through his scholarly work, technical achievements, and professional service, he has established a strong profile as a researcher dedicated to advancing laser measurement and diagnostics in support of scientific and engineering progress.

Profiles: Scopus | ORCID

Featured Publications

Yong Bai*, Innovative rotating hollow needle design for accurate measurement of high-power laser microspots. Optics and Laser Technology, Accepted.

Yong Bai*, Innovative rotating hollow needle design for accurate measurement of high-power laser microspots. Optics and Laser Technology, 2025, 1(1), Article ID pending.

Yong Bai*, Innovative rotating hollow needle design for accurate measurement of high-power laser microspots. Optics and Laser Technology, In Press.

Mr. Mamoon Asghar | Photonic & Optoelectronic Devices | Best Researcher Award

Mr. Mamoon Asghar | Photonic & Optoelectronic Devices | Best Researcher Award

PhD Student | Shenzhen University | China

Dr. Mamoon Asghar is a dedicated PhD scholar in Optoelectronic Engineering at Shenzhen University, China, specializing in the development of mid-infrared ultrashort high-power fiber lasers. He holds both bachelor’s and master’s degrees in Physics, which form the foundation of his advanced research in photonics and laser systems. His academic journey reflects a strong commitment to innovation, with notable contributions to the design and optimization of fiber lasers for industrial and medical applications. Dr. Asghar has successfully completed multiple research projects and authored over a dozen peer-reviewed publications in leading international journals such as Optical Materials Express, Chaos, Solitons & Fractals, and Applied Optics. His research primarily focuses on the use of advanced nanomaterials and saturable absorbers for pulse modulation, achieving femtosecond pulse durations that push the boundaries of current laser technology. Alongside his research accomplishments, he has engaged in collaborative projects with experts in optical materials and fiber laser design, contributing to the broader advancement of photonic science. His scholarly excellence is reflected through his growing citation record, professional memberships, and active participation in the academic community. Dr. Asghar’s innovative work and consistent research output make him a distinguished candidate for recognition in the field of Electrical and Optical Engineering.

Profile: ORCID

Featured Publications

Mamoon Asghar*, Strontium ferrite nanoparticles based broadband nonlinear optical modulator for ultrafast pulse generation in fiber lasers. Chaos, Solitons & Fractals, Accepted.

Mamoon Asghar*, Ameliorating the stability of thulium-doped mode-locked fiber laser using yttrium iron garnet nanoparticles-based saturable absorber. Optical Materials Express, 2025, 15(3), 124578.

Mamoon Asghar, High modulation depth assisted by FeIn₂S₄ nanocrystals for ultrashort pulse generation in mode-locked erbium-doped fiber lasers. Optical Materials, 2025, 14(2), 116832.

Mamoon Asghar, On the performance of a Q-switched erbium-doped fiber laser based on a cadmium-sulfide (CdS) thin-film saturable absorber. Optics Continuum, 2024, 3(8), 1528–1539.