Sergei Badulin | Physics | Best Paper Award

Dr. Sergei Badulin | Physics | Best Paper Award

Head of laboratory at P.P.Shirshov Institute of Oceanology, Russia

Sergei I. Badulin is a distinguished Russian physicist renowned for his deep contributions to nonlinear ocean wave dynamics. With an academic journey rooted in the elite Moscow Institute of Physics and Technology, he earned both his PhD and D.Sc. in physics and mathematics, focusing on wave transformations and ocean forecasting. He currently leads the Nonlinear Wave Processes Laboratory at the P.P. Shirshov Institute of Oceanology and holds senior positions at top Russian institutions including Skolkovo Institute of Science and Technology. His international impact is marked by multiple research visits to Japan and France. Badulinโ€™s research portfolio spans the theoretical and experimental study of oceanic gravity waves, wind-sea forecasting, and remote sensing of sea surfaces ๐ŸŒŠ๐Ÿ“ก. Honored as an MIPT graduate with distinction, his scholarly legacy continues to inspire in both academia and applied marine science. His profound scientific insights contribute significantly to ocean monitoring and global environmental understanding ๐ŸŒ๐Ÿง .

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๐ŸŽ“ Education

Sergei Badulinโ€™s academic excellence was cultivated at the prestigious Moscow Institute of Physics and Technology (MIPT), where he graduated with honors in 1982, specializing in aero- and thermodynamics โœˆ๏ธ๐Ÿ”ฅ. He went on to earn a PhD in Physics and Mathematics in 1985, with a focus on the transformation of internal ocean waves in hydrological field inhomogeneities ๐ŸŒŠ๐Ÿ“˜. Demonstrating an enduring commitment to academic excellence, he further achieved a Doctor of Science (D.Sc.) degree in 2009, centered on wave dynamics for ocean forecasting and monitoring. He also pursued French language studies between 1983โ€“1985, reflecting his preparedness for international collaboration. His rigorous educational background has empowered him to bridge theoretical physics and marine science with precision and innovation ๐Ÿ“šโš›๏ธ. This strong foundation continues to underpin his impactful research across global oceanographic institutions.

๐Ÿ‘จโ€๐Ÿ”ฌ Professional Experience

Prof. Badulinโ€™s career trajectory reflects both academic leadership and international collaboration. Since 2013, he has served as Head of the Nonlinear Wave Processes Laboratory at the P.P. Shirshov Institute of Oceanology. Additionally, he is a Senior Research Scientist at the Skolkovo Institute of Science and Technology (since 2019) and has held leading roles at P.N. Lebedev Physical Institute, Novosibirsk State University, and Russian State Hydrometeorological University ๐Ÿ›๏ธ๐Ÿ’ผ. Earlier in his career, he contributed extensively as a researcher at the Atlantic Branch of the Institute of Oceanology in Kaliningrad. His international engagements include visiting scientist positions in Japan (1998) and France (1993โ€“1996), enriching his global research impact ๐ŸŒ๐Ÿ”ฌ. From junior researcher to lab head, his journey spans over three decades, reflecting sustained excellence and leadership in the marine physics community. His professional record is a benchmark in ocean wave modeling and environmental forecasting ๐Ÿ“ˆ๐ŸŒŠ.

๐Ÿ”ฌ Research Interests

Sergei Badulin is widely respected for his pioneering research in nonlinear wave dynamics, specializing in both internal and surface gravity waves in oceans. His work integrates theoretical modeling, experimental observation, and remote sensing technologies to enhance understanding of wave transformation, energy propagation, and sea state forecasting ๐ŸŒŠ๐Ÿ“ก. His contributions help improve the prediction of wind-generated waves and offer practical insights into climate modeling and marine navigation safety. Furthermore, Badulinโ€™s findings support advancements in satellite remote sensing and monitoring systems for oceanic conditions, crucial for both scientific inquiry and global environmental policy. His deep involvement in collaborative projects with institutions in France and Japan has broadened the scope and precision of his marine studies ๐Ÿ“˜๐ŸŒ. Overall, his research continues to push the boundaries of fluid dynamics and earth system sciences, addressing both theoretical challenges and real-world marine applications with clarity and depth ๐ŸŒ๐Ÿ”ญ.

๐Ÿ… Awards and Honors

Sergei I. Badulin was honored as a top graduate of MIPT in 1982, a significant early recognition that foreshadowed a highly productive academic life ๐ŸŽ“โœจ. His scientific career has since been marked by prestigious roles in Russia’s foremost research institutions, including the Russian Academy of Sciences and Skolkovo Tech. Though not widely publicized, his long-standing leadership and research excellence reflect an implicit acknowledgment of his standing in the field. His international fellowships and visiting scientist appointments in Japan and France underscore his recognition on the global stage ๐ŸŒ๐Ÿงช. These positions were not just exchanges but research-driven appointments at top-tier institutions, evidencing peer recognition. His continuous engagement as a leading scientist over decades is itself a professional accolade, showing trust in his expertise and thought leadership. Badulinโ€™s reputation is further enhanced by the success and longevity of the laboratory he directs, setting standards in nonlinear ocean wave research ๐Ÿง ๐Ÿ”ฌ.

๐Ÿ“š Publications Top Noteย 

1. Altimetry for the future: Building on 25 years of progress

  • Authors: S. Abdalla, A.A. Kolahchi, M. Ablain, S. Adusumilli, S.A. Bhowmick, et al.

  • Year: 2021

  • Citations: 227

  • Source: Advances in Space Research, Vol. 68(2), pp. 319โ€“363

  • Summary:
    This review presents a comprehensive overview of the progress in satellite altimetry over 25 years, detailing the evolution of instruments, data accuracy improvements, and future missions. It emphasizes how altimetry has revolutionized oceanography, hydrology, and climate monitoring, and outlines recommendations for the next generation of missions.


2. Weakly turbulent laws of wind-wave growth

  • Authors: S.I. Badulin, A.V. Babanin, V.E. Zakharov, D. Resio

  • Year: 2007

  • Citations: 167

  • Source: Journal of Fluid Mechanics, Vol. 591, pp. 339โ€“378

  • Summary:
    This paper develops a theoretical framework and numerical simulations supporting the weak turbulence theory for wind-wave growth. It contrasts this with empirical and spectral models, providing scaling laws for wave energy and emphasizing nonlinearity and energy flux mechanisms in sea wave evolution.


3. Self-similarity of wind-driven seas

  • Authors: S.I. Badulin, A.N. Pushkarev, D. Resio, V.E. Zakharov

  • Year: 2005

  • Citations: 146

  • Source: Nonlinear Processes in Geophysics, Vol. 12(6), pp. 891โ€“945

  • Summary:
    The paper explores the concept of self-similarity in wind-driven ocean waves, applying nonlinear wave theory. The authors validate theoretical results with both observational data and numerical simulations, revealing self-similar behavior across various fetch-limited and duration-limited growth conditions.


4. On weakly turbulent scaling of wind sea in simulations of fetch-limited growth

  • Authors: E. Gagnaire-Renou, M. Benoit, S.I. Badulin

  • Year: 2011

  • Citations: 70

  • Source: Journal of Fluid Mechanics, Vol. 669, pp. 178โ€“213

  • Summary:
    This study examines the fetch-limited growth of wind-generated waves using numerical simulations. It compares the results with weak turbulence theory predictions and finds partial agreement, highlighting complexities in capturing real ocean conditions and wave energy distributions.


5. A model of water wave โ€˜horse-shoeโ€™ patterns

  • Authors: V.I. Shrira, S.I. Badulin, C. Kharif

  • Year: 1996

  • Citations: 69

  • Source: Journal of Fluid Mechanics, Vol. 318, pp. 375โ€“405

  • Summary:
    This theoretical study explains the formation of distinctive โ€œhorse-shoeโ€ patterns observed in surface water waves. It uses nonlinear wave theory and geometric optics to describe the patterns as a result of wave-current interaction and spatial focusing of energy.


6. On two approaches to the problem of instability of short-crested water waves

  • Authors: S.I. Badulin, V.I. Shrira, C. Kharif, M. Ioualalen

  • Year: 1995

  • Citations: 63

  • Source: Journal of Fluid Mechanics, Vol. 303, pp. 297โ€“326

  • Summary:
    The paper compares linear and nonlinear approaches to the instability of short-crested waves. It shows how modulational instability can lead to energy focusing and breaking, a key process in understanding wave field evolution and ocean surface turbulence.


7. A physical model of sea wave period from altimeter data

  • Author: S.I. Badulin

  • Year: 2014

  • Citations: 61

  • Source: Journal of Geophysical Research: Oceans, Vol. 119(2), pp. 856โ€“869

  • Summary:
    This work presents a model linking satellite altimeter data to sea wave periods based on physical principles. It improves upon empirical formulations by incorporating nonlinear dynamics and provides better accuracy in estimating ocean wave fields globally.


8. Universality of sea wave growth and its physical roots

  • Authors: V.E. Zakharov, S.I. Badulin, P.A. Hwang

  • Year: 2015

  • Citations: 60

  • Source: Journal of Fluid Mechanics, Vol. 780, pp. 503โ€“535

  • Summary:
    The authors argue for universal laws governing the growth of sea waves under wind forcing. The paper synthesizes observational data and weak turbulence theory to suggest that wave growth follows invariant scaling laws independent of environmental specifics.


9. On the irreversibility of internal-wave dynamics due to wave trapping by mean flow inhomogeneities. Part 1. Local analysis

  • Authors: S.I. Badulin, V.I. Shrira

  • Year: 1993

  • Citations: 53

  • Source: Journal of Fluid Mechanics, Vol. 251, pp. 21โ€“53

  • Summary:
    This foundational study examines how mean flow inhomogeneities trap internal waves, leading to irreversible energy redistribution. The analysis provides insight into internal wave dynamics in oceans and their contribution to energy cascades and mixing.


10. A laboratory study of the transformation of regular gravity-capillary waves in inhomogeneous flows

  • Authors: S.I. Badulin, K.V. Pokazayev, A.D. Rozenberg

  • Year: 1983

  • Citations: 44

  • Source: Izvestiya Atmospheric and Oceanic Physics, Vol. 19(10), pp. 782โ€“787

  • Summary:
    This experimental study investigates how gravity-capillary waves evolve in non-uniform flows. It reveals transformation effects such as amplitude modulation and wave steepening, contributing to the understanding of wave behavior in natural fluid systems.

โœ… Conclusion

Dr. Sergei I. Badulin exemplifies scientific excellence in the field of ocean physics, blending rich academic training with decades of research leadership ๐ŸŒŠ๐Ÿ“˜. His interdisciplinary work links theoretical physics with real-world applications like marine forecasting, climate observation, and remote sensing, making his contributions both academically valuable and societally relevant ๐ŸŒโš™๏ธ. His international presence and collaborative projects reflect an openness to scientific exchange and a commitment to advancing global knowledge. As the head of a leading research laboratory and senior figure at Skolkovo Tech, Badulin continues to influence new generations of researchers and drive marine science innovation ๐Ÿš€๐Ÿ”ฌ. While his awards may be understated publicly, his career achievements, scholarly depth, and ongoing research activities make him an exceptional candidate for recognition such as the Best Researcher Award. His legacy is one of rigorous inquiry, impactful research, and visionary scientific leadership ๐ŸŒŸ๐Ÿ….

Daline Tho | Radiation Dosimetry | Best Researcher Award

Dr. Daline Tho | Radiation Dosimetry | Best Researcher Award

Dr. Daline Tho, MD Anderson Cancer Center, United States

Dr. Daline Tho, a Postdoctoral Fellow at MD Anderson Cancer Center, specializes in medical physics with a focus on radiation oncology. She earned her Ph.D. and M.S. in Medical Physics from Universitรฉ Laval and a B.S. in Physics from Universitรฉ de Montrรฉal. Dr. Tho has extensive professional experience, strong research interests in radiation therapy optimization, and a history of leadership and community engagement. Her work has been recognized with multiple prestigious awards and scholarships, demonstrating her impact in the field of medical physics.

PROFILE

Orcidย  Profile

Educational Detail

Dr. Daline Tho holds a Ph.D. in Medical Physics from Universitรฉ Laval, where she conducted groundbreaking research in radiation oncology and earned multiple prestigious scholarships. She completed a fast-track program from her M.S. in Medical Physics to her doctorate at Universitรฉ Laval, showcasing her exceptional academic aptitude. Dr. Tho began her academic journey with a B.S. in Physics from Universitรฉ de Montrรฉal, graduating in 2016.

Professional Experience

Dr. Tho is currently a Postdoctoral Fellow at MD Anderson Cancer Center, focusing on advancing medical physics and oncology. She previously worked as a medical physicist under a six-month contract and gained extensive hands-on experience as a medical physics intern at multiple healthcare facilities in Quebec. During these roles, she contributed to maintaining linear accelerators and assisting physicists in critical tasks, honing her technical and clinical expertise.

Research Interests

Dr. Thoโ€™s research interests lie at the intersection of radiation oncology, medical physics, and cancer treatment technologies. She is particularly focused on the optimization of linear accelerators, advanced radiation therapies, and their clinical applications. Her work aims to improve patient outcomes through precision and innovation in cancer treatment.

Extracurricular Activities

Dr. Tho is actively involved in leadership and community engagement. She serves on the Postdoctoral Association Executive Committee and has represented students in multiple capacities, including as a member of Universitรฉ Lavalโ€™s student scientific day committee and at the Association Quรฉbรฉcoise des Physiciens Mรฉdicaux Cliniques. Additionally, she coordinated social activities for the cancer research group, fostering a collaborative academic environment.

Honors and Awards

Dr. Tho has received numerous accolades throughout her academic career, including the $25,000 Radiation Oncology Research Initiatives Grant and the Tremplin Award from Research Funds Quebec. She was the department winner of the Three-Minute Thesis contest at Universitรฉ Laval and earned competitive scholarships for graduate studies from the Ministry of Health and Social Services of Quebec and Desjardins Cooperative. These honors underscore her academic excellence and contributions to medical physics.

Top Notable Publications

“Characterization of an Inorganic Powder-Based Scintillation Detector Under a UHDR Electron Beam”

Authors: Daline Tho

Year: 2024

Journal: Sensors

DOI: 10.3390/s24248064

Source: MDPI

“Establishing a Fingerprinting Method for Fast Catheter Identification in HDR Brachytherapy In Vivo Dosimetry”

Authors: Daline Tho, Cรฉdric Bรฉlanger, Erik B. Jรธrgensen

Year: 2024

Journal: Brachytherapy

DOI: 10.1016/j.brachy.2023.10.004

Source: MD Anderson

“A Scintillation Dosimeter with Real-Time Positional Tracking Information for In Vivo Dosimetry Error Detection in HDR Brachytherapy”

Authors: Daline Tho

Year: 2023

Journal: Journal of Applied Clinical Medical Physics

DOI: 10.1002/acm2.14150

Source: AAPM Journals

“A High-Z Inorganic Scintillatorโ€“Based Detector for Time-Resolved In Vivo Dosimetry During Brachytherapy”

Authors: Daline Tho

Year: 2021

Journal: Medical Physics

DOI: 10.1002/mp.15257

Source: ResearchGate

“Performance of an Enhanced Afterloader with Electromagnetic Tracking Capabilities for Channel Reconstruction and Error Detection”

Authors: Daline Tho

Year: 2021

Journal: Medical Physics

DOI: 10.1002/mp.14877

Source: AAPM Journals

“Technical Note: Identification of an Optimal Electromagnetic Sensor for In Vivo Electromagnetic-Tracked Scintillation Dosimeter for HDR Brachytherapy”

Authors: Daline Tho

Year: 2019

Journal: Medical Physics

DOI: 10.1002/mp.13508

Source: ResearchGate

“Technical Note: On EM Reconstruction of a Multi-Channel Shielded Applicator for Cervical Cancer Brachytherapy: A Feasibility Study”

Authors: Daline Tho

Year: 2018

Journal: Medical Physics

DOI: 10.1002/mp.12789

Source: ResearchGate

Conclusion

Dr. Daline Tho’s comprehensive academic background, professional achievements, and dedication to advancing medical physics make her a strong candidate for the “Research for Best Researcher Award.” Her extensive research experience, recognized achievements, and leadership roles underscore her potential to make significant future contributions to her field.