Yang Tan | Interactions and fields | Best Researcher Award

Prof. Dr. Yang Tan | Interactions and fields | Best Researcher Award

Shandong University | China

Professor Yang Tan is a distinguished academic leader and researcher in the field of integrated photonics, specializing in microcavity lasers, crystalline films, and optical signal amplification. Born in March 1984, he has risen through the ranks of Shandong University to become a Professor at the School of Physics. His impressive career includes significant contributions to photonics and laser technologies, having published more than 60 peer-reviewed papers in top-tier journals such as Advanced Functional Materials, ACS Nano, and Optics Letters. His ongoing research focuses on advancing ultrafast lasers, micro-nano optical field manipulation, and single crystal thin films.

👨‍🎓Profile

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Early Academic Pursuits 🎓

Professor Tan began his academic journey in 2006, pursuing a PhD in Physics at Shandong University, where he honed his skills in optics and material sciences. He earned his doctorate in 2011 and subsequently advanced to postdoctoral research at the University of Calgary in Canada, where he deepened his expertise in laser technologies and optical materials. These early academic experiences laid the foundation for his groundbreaking research in integrated photonics and microcavity lasers.

Professional Endeavors đź’Ľ

After completing his postdoctoral studies, Professor Tan returned to Shandong University as a Lecturer in 2012, eventually progressing to Associate Professor in 2015, and later Professor in 2018. His career at Shandong University has been marked by his leadership in research and teaching, overseeing numerous National Natural Science Foundation projects and contributing significantly to the development of innovative optical technologies. He has also served as a PhD supervisor, mentoring the next generation of physicists and engineers.

Contributions and Research Focus 🔬

Professor Tan’s research focus lies at the intersection of integrated photonics, laser physics, and material science. His innovative work explores the manipulation of micro-nano optical fields, the development of single crystal thin films, and the interaction between energetic ions and solids. His research on microcavity lasers has led to significant breakthroughs, such as the development of mid-infrared laser emissions, enhanced thermal stability of microdisk lasers, and heterogeneous integration of on-chip lasers. These contributions have placed him at the forefront of photonics research, with direct applications in telecommunications, sensing technologies, and quantum optics.

Impact and Influence 🌍

Professor Tan’s work has had a profound impact on the fields of photonics and material sciences. His publications in high-impact journals have advanced the understanding of microcavity laser technologies, optical waveguide systems, and crystalline film integrations. His interdisciplinary approach has influenced researchers not only in optics but also in fields like nanoelectronics, quantum information, and bio-optics. His research has led to tangible technological advancements, pushing the boundaries of laser efficiency, thermal management, and nanophotonic integration.

Academic Citations đź“‘

With more than 60 academic papers and several highly cited works, Professor Tan’s research has earned substantial recognition within the scientific community. His papers have been cited in leading journals such as Light: Science & Applications, ACS Nano, and Nano Letters, underlining the wide influence and importance of his contributions. His research has been cited extensively for its innovation in microcavity lasers and integrated photonics, demonstrating the global impact of his work.

Research Skills 🔍

Professor Tan possesses a comprehensive set of research skills, including expertise in photonics, nanotechnology, material synthesis, and ultrafast laser technologies. His ability to merge fundamental physics with applied technologies has enabled him to address challenges in optical signal amplification, microlaser emissions, and material integration. His innovative approach to defect engineering in van der Waals heterostructures and the development of whispering-gallery mode lasers is a testament to his creative and analytical prowess.

Teaching Experience 📚

As a PhD supervisor and Professor, Professor Tan has taught a wide range of courses in optics, photonics, and material science. He is known for his engaging teaching style, which encourages critical thinking and hands-on experimentation. His mentoring extends beyond the classroom, where he has guided numerous graduate students and postdoctoral researchers, helping them develop into independent researchers and experts in their fields. His leadership in education reflects his commitment to fostering future generations of scientists.

Awards and Honors 🏆

Professor Tan’s outstanding research has been recognized by several prestigious awards. In 2022, he received the National Excellent Young Scientists Fund, acknowledging his significant contributions to integrated photonics. Additionally, his achievements have earned him the Shandong Provincial Natural Science Award (Second Prize) twice. These honors reflect the impact of his work on both the scientific community and society at large.

Legacy and Future Contributions đź”®

Professor Yang Tan’s legacy is built on his pioneering work in the development of microcavity lasers and integrated photonic systems, which continue to influence the evolution of photonics and nanotechnology. Looking ahead, Professor Tan aims to expand his research into quantum photonics and biomedical applications, which will likely have far-reaching effects in the fields of quantum communication, biomedical imaging, and sensing. His continued exploration of novel materials and laser technologies promises to shape the future of photonics and related industries, making him a key figure in the ongoing technological revolution.

Publications Top Notes

Hopping transfer optimizes avalanche multiplication in molybdenum disulfide

  • Authors: Xiaofan Cai, Ruichang Chen, Yushui Tian, Xu Gao, Meili Yuan, Haixia Hu, Hang Yin, Yuanyuan Qu, Yang Tan, Feng Chen
    Journal: Materials Today Nano
    Year: 2025

Human-friendly semitransparent organic solar cells achieving high performance

  • Authors: Zonghao Wu, Beibei Shi, Jiangsheng Yu, Mengzhen Sha, Jiangkai Sun, Dongcheng Jiang, Xin Liu, Wenxiao Wu, Yang Tan, Huiyuan Li et al.
    Journal: Energy & Environmental Science
    Year: 2024

Enhancing thermal stability of Nd:GGG WGM microdisk lasers via silica integration

  • Authors: Huiqi Li, Zhaocong Wang, Lei Wang, Yang Tan, Feng Chen
    Journal: Nanophotonics
    Year: 2024

Free-space laser emission from Nd:YAG elliptical microdisks

  • Authors: Huiqi Li, Zhaocong Wang, Qingming Lu, Lei Wang, Yang Tan, Feng Chen
    Journal: Optics Letters
    Year: 2024

Selective 1.3 ÎĽm Laser Emission via Coupled Microlaser for Laser Resonance Tuning

  • Authors: Huiqi Li, Zhaocong Wang, Lei Wang, Yang Tan, Feng Chen
    Journal: ACS Photonics
    Year: 2024

 

 

Dejan Milošević | Interactions and fields | Best Researcher Award

Prof. Dr. Dejan Milošević | Interactions and fields | Best Researcher Award

Full professor of theoretical physics, University of Sarajevo, Bosnia and Herzegovina

👨‍🎓 Profile

Early Academic Pursuits 🎓

Dejan Milošević was born on July 5, 1959, in Sarajevo, Bosnia and Herzegovina. His academic journey began at the Faculty of Science, University of Sarajevo, where he studied Physics and completed his undergraduate degree in 1981. He furthered his education at the University of Belgrade, where he pursued postgraduate studies in Theoretical Physics, earning his M.Sc. in 1986 and Ph.D. in 1990. His doctoral thesis, titled “Atomic processes in a strong laser field,” laid the foundation for his long and distinguished career in laser physics and atomic theory.

Professional Endeavors đź’Ľ

Milošević’s career spans over four decades, starting in 1982 when he worked as an Assistant at the Institute of Physics at the University of Sarajevo. From 1984 to 1998, he served as a Researcher at the Research & Development Centre of the Zrak company, focusing on applied physics and technology. His academic journey advanced rapidly, and he became an Assistant Professor in 1991 at the Faculty of Mechanical Engineering, University of Sarajevo. By 1998, he joined the Department of Physics at the Faculty of Science, becoming an Associate Professor. He was promoted to Full Professor in 2004, specializing in Theoretical Physics. His leadership roles included heading the Department of Atomic, Molecular, and Optical Physics (2001-2004) and overseeing the Postgraduate Study of Physics (2004-2012). He also served as Vice-Dean for International Collaboration from 2011-2016, strengthening the university’s global academic relationships.

Contributions and Research Focus 🔬

Milošević’s research primarily focuses on atomic processes in strong laser fields, laser-matter interactions, and attosecond science. He has contributed significantly to the field of nonlinear optics and quantum mechanics. His pioneering work in atomic physics has had a profound impact on understanding laser-induced phenomena and the interaction between light and matter at ultra-short timescales. A notable aspect of his research is his work on attosecond physics, where he investigates the dynamics of electrons and their interaction with intense laser pulses. His collaboration with the Max-Born-Institut für Nichtlineare Optik und Kurzzeit-Spektroskopie in Berlin has been instrumental in advancing the field.

Impact and Influence 🌍

Milošević’s work has garnered international recognition. His collaborations with research institutions such as the Institute for Theoretical Physics in Innsbruck and the University of Nebraska have broadened his impact. His research is frequently cited, and he has become a key figure in the atomic and laser physics community. His publications, totaling 247 papers, have been cited over 10,000 times, reflecting the profound influence of his work. He has received numerous awards, including the Alexander von Humboldt Fellowship and the Georg Forster Research Award from the Alexander von Humboldt Foundation, highlighting his exceptional contributions to the field of theoretical physics.

Academic Citations 📚

According to the Web of Science Core Collection, Milošević’s work has achieved substantial academic recognition, with an h-index of 52 and more than 10,000 citations. This underscores the impact of his research within the global scientific community. His scholarly output spans both highly theoretical and experimental domains, making him one of the leading experts in his field. His continued contributions ensure that his research remains highly influential, especially in the fields of laser-matter interactions and quantum mechanics.

Technical Skills 🛠️

Milošević possesses a wide range of technical skills that have been honed throughout his career. His expertise spans theoretical physics, quantum mechanics, laser physics, and nonlinear optics. He is proficient in the use of advanced computational tools for modeling atomic and molecular processes, and he has contributed to the development of new theoretical frameworks for understanding light-matter interactions at extreme timescales. His technical proficiency is complemented by a deep understanding of experimental techniques, gained through years of collaboration with leading research groups around the world.

Teaching Experience đź“–

Milošević has been a dedicated educator at the University of Sarajevo, where he has mentored and trained hundreds of students at both undergraduate and postgraduate levels. He served as the Head of the Doctoral Study at the Department of Physics from 2013 to 2019, shaping the future of theoretical physics in Bosnia and Herzegovina. His teaching philosophy emphasizes rigorous scientific thinking and innovative research. As a result, his students have gone on to become leading physicists and researchers in their own right. His recognition as the Best Professor of the Year at the University of Sarajevo in 2009 reflects the high esteem in which he is held by his peers and students.

Legacy and Future Contributions 🌟

Milošević’s legacy is one of academic excellence, scientific leadership, and international collaboration. He has significantly shaped the development of theoretical physics at the University of Sarajevo and in Bosnia and Herzegovina, leaving an indelible mark on the scientific landscape. His future contributions are likely to continue in the realm of attosecond science and quantum optics, areas where his research has already demonstrated great promise. As he continues his work with international collaborators, his ongoing research will undoubtedly lead to further breakthroughs in the understanding of laser physics and quantum dynamics.

Top Noted Publications

Asymptotic methods applied to integrals occurring in strong-laser-field processes
  • Authors: Milošević, D.B., Jašarević, A.S., Habibović, D., ÄŚerkić, A., Becker, W.
    Journal: Journal of Physics A: Mathematical and Theoretical
    Year: 2024
Above-threshold ionization by a strong circularly polarized laser pulse assisted by a terahertz pulse
  • Authors: AgaÄŤević, D., Ibrišimović, N., Ĺ krgić, D., Milošević, D.B.
    Journal: European Physical Journal D
    Year: 2024
Quantum orbits in atomic ionization beyond the dipole approximation
  • Authors: Jašarević, A.S., Habibović, D., Milošević, D.B.
    Journal: Physical Review A
    Year: 2024
High-order above-threshold ionisation of diatomic molecules by few-cycle bicircular and orthogonally polarised two-colour pulses
  • Authors: Habibović, D., Jašarević, A.S., BusuladĹľić, M., Milošević, D.B.
    Journal: Physical Chemistry Chemical Physics
    Year: 2024
Wigner time delay revisited
  • Authors: Fetić, B., Becker, W., Milošević, D.B.
    Journal: Annals of Physics
    Year: 2024
Modified saddle-point method applied to high-order above-threshold ionization and high-order harmonic generation: Slater-type versus asymptotic ground-state wave function
  • Authors: Jašarević, A.S., Hasović, E., Milošević, D.B.
    Journal: Physical Review A
    Year: 2024
Strong-field processes induced by an ultrashort linearly polarized pulse with two carrier frequencies
  • Authors: Habibović, D., Milošević, D.B.
    Journal: Physical Review A
    Year: 2024

 

 

Yuri Bleyan | Computational Particle Physics | Best Researcher Award

Dr. Yuri Bleyan | Computational Particle Physics | Best Researcher Award

Researcher/Senior Lecturer at Institute of Chemical Physics after A.B. Nalbandyan, Armenia

Yuri Bleyan, born on October 10, 1996, in Yerevan, Armenia, is a prominent researcher and lecturer in the field of quantum nanostructures. He completed his education at the Russian-Armenian University, earning a PhD in 2022 with a dissertation focused on the optical properties of excitonic complexes in quantum dots. Fluent in Armenian, Russian, and English, Yuri has actively contributed to the academic community through numerous publications and presentations at international conferences. His dedication to both research and education positions him as a leading figure in his field.

Profile:

Education:

Yuri Bleyan began his academic journey at N 147 School, followed by the Physico-Mathematical Special School after A. Shahinyan. He graduated from the Faculty of Applied Physics and Engineering at Russian-Armenian University in 2017, specializing in General Physics and Quantum Nanostructures. He continued his studies at the same institution, completing his Master’s in 2019 and his PhD in 2022, focusing on the investigation of optical properties in quantum dots. His educational background provides a solid foundation for his research pursuits.

Professional Experience:

Yuri’s professional experience includes a role as a junior researcher at the Mathematical Modeling of Quantum Systems Laboratory, followed by a teaching assistantship at Russian-Armenian University. Since 2021, he has served as a lecturer at the university and as a physics teacher at “Usmunq” School, specializing in physics, mathematics, and biomedical classes. In 2023, he joined the Quantum Optics and Nanophotonics group at the Institute of Chemical Physics after A. B. Nalbandyan NAS RA, where he continues to advance his research.

Research Focus:

Yuri’s research primarily focuses on the optical properties of semiconductor quantum dots and excitonic complexes. His work investigates various phenomena, including biexciton and trion states, magneto-optical properties, and the nonlinear optical behavior of these nanostructures. By exploring these areas, Yuri aims to contribute to the development of next-generation optoelectronic devices and enhance the understanding of quantum materials, positioning his research at the forefront of contemporary physics.

Awards and Honors:

Yuri Bleyan has received notable accolades, including the Educational Award from the President of the Republic of Armenia for being the Best Master Student in 2018, and the Educational Award from the Ministry of Education and Science as the Best Master’s Student in 2019. These awards recognize his academic excellence and commitment to research in the IT sphere, highlighting his contributions to the scientific community.

Publication Top Notes:

Title: Biexciton, negative and positive trions in strongly oblate ellipsoidal quantum dot
  • Authors: DB Hayrapetyan, YY Bleyan, DA Baghdasaryan, HA Sarkisyan, …
    Year: 2019
    Citations: 29
Title: Non-linear optical properties of biexciton in ellipsoidal quantum dot
  • Authors: YY Bleyan, PA Mantashyan, EM Kazaryan, HA Sarkisyan, G Accorsi, …
    Year: 2022
    Citations: 11
Title: Magnetobiexciton in strongly oblate ellipsoidal quantum dot
  • Authors: YY Bleyan, DB Hayrapetyan
    Year: 2022
    Citations: 5
Title: Tuning Terahertz Recombination Transitions of Quaternion States in Ellipsoidal Quantum Dot
  • Authors: YY Bleyan, DB Hayrapetyan
    Year: 2019
    Citations: 5
Title: Impact of intense laser Bessel beam on excitonic complexes in ellipsoidal quantum dot
  • Authors: YY Bleyan, T.A. Sargsian, A.A. Kostanyan, D.B. Hayrapetyan, P.A. Mantashyan
    Year: 2023
    Citations: 3
Title: Optical properties of biexcitons in ellipsoidal quantum dot
  • Authors: YY Bleyan, DB Hayrapetyan, HA Sarkisyan, EM Kazaryan
    Year: 2018
    Citations: 3
Title: Investigation of Biexciton Induced Linear and Nonlinear Refractive Index Changes in Ellipsoidal Quantum Dot
  • Authors: YY Bleyan
    Year: 2022
    Citations: 1

 

 

Grigorios Panotopoulos | Particle physics and cosmology | Best Researcher Award

Assist Prof Dr. Grigorios Panotopoulos | Particle physics and cosmology | Best Researcher Award 

Department of Physics, Universidad de la Frontera, Chile

Grigorios Panotopoulos is a Greek physicist specializing in theoretical cosmology and high-energy physics. Born on July 22, 1975, he currently works at the Department of Physical Sciences at Universidad de la Frontera in Chile. With extensive international experience, including postdoctoral positions at renowned institutions such as LMU Munich and the University of Lisbon, Panotopoulos has made significant contributions to understanding the universe’s fundamental aspects.

Profile:

Education:

Grigorios completed his B.Sc. in Physics at the National and Kapodistrian University of Athens in 2000, followed by an M.Sc. in particle physics from the University of Crete in 2001. He earned his Ph.D. in Theoretical Cosmology from the University of Crete in 2006, focusing on cosmological evolution in brane-worlds. His academic journey reflects a strong foundation in both theoretical frameworks and practical applications in cosmology.

Professional experience:

With over 15 years of research experience, Grigorios Panotopoulos has held various postdoctoral positions, including at LMU Munich and the University of Lisbon. He has been involved in significant research projects related to dark matter and gravity modifications. Currently, he serves at Universidad de la Frontera, where he teaches and leads research on early universe physics and astroparticle phenomena. His collaborative work spans multiple countries and institutions, emphasizing his commitment to advancing the field.

Research focus:

Grigorios Panotopoulos’s research primarily revolves around high-energy physics and cosmology, specifically in areas such as inflation, dark matter, and alternative theories of gravity. He explores the physics of the early universe, focusing on extra dimensions and phenomena beyond the Standard Model. His work aims to bridge theoretical developments with observable phenomena, contributing to a deeper understanding of cosmic evolution and fundamental forces.

Awards and Honors:

Grigorios has received several accolades throughout his academic career, including a National Scholarships Foundation award for excellence in undergraduate studies in Greece. He won the 1st Prize at the 10th Summer School on Advanced Physics in 1998 and was awarded a Marie Curie Fellowship for his advanced studies. In 2020, he was recognized among the top 2% most influential scientists globally, highlighting his impact in theoretical physics.

Publication Top Notes:

  • Title: Quasinormal modes for a non-minimally coupled scalar field in a five-dimensional Einstein-Power-Maxwell background
    Authors: A. RincĂłn, P. A. Gonzalez, G. Panotopoulos, J. Saavedra, Y. Vasquez
    Year: 2022
    Citations: 10
  • Title: On the impact of non-local gravity on compact stars
    Authors: G. Panotopoulos, J. Rubio, I. Lopes
    Year: 2022
    Citations: 5
  • Title: Orbits of light rays in (1+2)-dimensional Einstein-Power-Maxwell gravity: Exact analytic solution to the null geodesic equations
    Authors: G. Panotopoulos, A. RincĂłn
    Year: 2022
    Citations: 4
  • Title: Charged polytropic compact stars in 4D Einstein-Gauss-Bonnet gravity
    Authors: G. Panotopoulos, A. Pradhan, T. Tangphati, A. Banerjee
    Year: 2022
    Citations: 3
  • Title: Binary X-ray sources in massive Brans-Dicke gravity
    Authors: G. Panotopoulos, A. RincĂłn, I. Lopes
    Year: 2022
    Citations: 7
  • Title: Tidal deformability and radial oscillations of anisotropic polytropic spheres
    Authors: J. D. V. Arbañil, G. Panotopoulos
    Year: 2022
    Citations: 6
  • Title: Slowly rotating dark energy stars
    Authors: G. Panotopoulos, A. RincĂłn, I. Lopes
    Year: 2021
    Citations: 12
  • Title: Interacting dark sector: Lagrangian formulation based on two canonical scalar fields
    Authors: G. Panotopoulos, I. Lopes
    Year: 2021
    Citations: 2
  • Title: Anisotropic Stars in 4D Einstein-Gauss-Bonnet Gravity
    Authors: T. Tangphati, A. Pradhan, A. Banerjee, G. Panotopoulos
    Year: 2021
    Citations: 8
  • Title: Accretion of matter and spectra of Binary X-ray sources in Massive Gravity
    Authors: G. Panotopoulos, A. RincĂłn, I. Lopes
    Year: 2021
    Citations: 11