Al-Emam Omar | Experimental Physics | Best Researcher Award

Assoc Prof Dr. Al-Emam Omar | Experimental Physics | Best Researcher Award

Assoc Prof Dr. Al-Emam Omar, Mansoura university, Egypt

Based on the provided details, Associate Professor Dr. Al-Emam Z. Omar would be a strong candidate for the Best Researcher Award. Here’s a summary of why he is suitable

Publication profile

Academic and Professional Background

  • Dr. Al-Emam Z. Omar is an Associate Professor in the Physics Department at Mansoura University, Egypt. His academic journey spans from being a demonstrator to becoming an associate professor, indicating a steady and impactful career progression in experimental physics.

Research Expertise

  • Specialization: Dr. Omar specializes in optical interferometric techniques, digital holography, and opto-mechanical investigations. His work extends to advanced topics like machine learning applications in image processing, which demonstrates a cross-disciplinary approach.
  • Notable Contributions: His research includes 24 publications with significant citations (242 in Scopus and 264 in Google Scholar) and an h-index of 11, reflecting the impact and relevance of his research in the field of physics.

Awards and Recognition

  • Dr. Omar received the Best Doctoral Thesis Award from Mansoura University in 2020, recognizing the quality and impact of his research work.
  • He is listed among the world’s top 2% of scientists according to Stanford University in 2023, highlighting his global recognition and influence in the scientific community.
  • He has been acknowledged as a reviewer for multiple reputable journals, which showcases his expertise and credibility in the scientific community.

Research Projects

  • Dr. Omar has contributed significantly to upgrading research facilities, such as the optics laboratory at Mansoura University, for advanced characterization of fibers and materials, funded by the Science and Technology Development Fund (STDF).

Publication Top Notes

  • πŸ“˜ A novel hybrid model based on integrating RGB and YCrCb color spaces for demodulating the phase map of fibers using a color phase-shifting profilometry technique (2024) – 1 citation
  • πŸ”¬ The influence of degradation in different pH buffer solutions on the optical and durability properties of Monocryl suture: (an in vitro study) (2024) – 1 citation
  • 🧡 A refined method for investigating the morphological and optical properties of a biodegradable monocryl suture (2023) – 1 citation
  • πŸ“š Optical microscope: interferometric and non-interferometric optical microscopy techniques (Book Chapter, 2023) – 0 citations
  • πŸ§ͺ Phase estimation for investigating the optical and mechanical properties of Monocryl suture for soft tissue approximation and ligation (2022) – 4 citations
  • 🧫 Interferometric accurate investigation of opto-thermo-mechanical features with help of artificial intelligence for antimicrobial polyamide-6 fibers grafted by quaternary ammonium salt with nano zinc oxide (2022) – 3 citations
  • πŸ€– Adaptive investigation of the optical properties of polymer fibers from mixing noisy phase-shifting microinterferograms using deep learning algorithms (2022) – 8 citations
  • 🌑️ Investigation of the opto-thermo-mechanical properties of antimicrobial PET/TiO2 fiber using the transport of intensity equation technique (2022) – 2 citations
  • πŸŒ€ Adaptive demodulation for phase information and opto-mechanical properties of fibers from blurred digital holography pattern (2022) – 5 citations
  • πŸ“ A suggested optical setup for duplicated-image transport intensity equation technique to accurate determine the optical anisotropy in fibers (2021) – 2 citations

Conclusion

Dr. Al-Emam Z. Omar’s extensive research in experimental physics, combined with his recognition by international and national awards, positions him as a suitable candidate for the Best Researcher Award. His ongoing projects and consistent contributions to scientific literature underline his dedication to advancing knowledge and technology in his field.

 

Dmitry Yakovlev | Condescend matter physics | Young Scientist Award

Dr. Dmitry Yakovlev | Condescend matter physics | Young Scientist Award

Dr. Dmitry Yakovlev, PSL Research University, ParisTech (Paris Institute of Technology), France

Dr. Dmitry Yakovlev, currently a Postdoctoral Researcher at Γ‰cole supΓ©rieure de physique et de chimie industrielles de la Ville de Paris (ESPCI), specializes in condensed matter physics, focusing on superconducting quantum phenomena. With a Ph.D. from Moscow Institute of Physics and Technology (MIPT), his expertise spans nanofabrication, quantum computing, and Josephson junctions. Dmitry has contributed to advancements in single photon detectors and hybrid superconducting systems, as evidenced by his publications in leading journals. Passionate about teaching and research, he engages in international conferences and enjoys football, skiing, and diving. πŸ§¬πŸ”¬

 

Publication profile

Orcid

πŸ‘¨β€πŸ”¬ Education

Dmitry Yakovlev pursued his academic journey at Moscow Institute of Physics and Technology (MIPT), achieving a B.S. and M.S. in Applied Mathematics and Physics, followed by a Ph.D. in Applied Engineering and Physics. Currently, he is a postdoctoral researcher at Paris Sciences et Lettres University, specializing in Solid State Physics

πŸ‘¨β€πŸ’Ό Work Experience

He has contributed significantly as a researcher at institutions like the Russian Quantum Center and Moscow Institute of Physics and Technology, focusing on superconducting quantum phenomena and topological insulators.

Research Focus

Dmitry S. Yakovlev is a prominent researcher specializing in hybrid superconducting systems and topological insulators. His work focuses on experimental studies and theoretical advancements in quantum phenomena, particularly in devices like superconducting junctions and nanocrystals of Bi2Te2.3Se0.7. Yakovlev’s contributions extend to resonant oscillations of Josephson currents and anomalous microwave responses in topological superconductors. His research, published in leading journals such as Advanced Quantum Technologies and Symmetry, underscores his expertise in controlling non-classical field states using solid-state qubits. πŸ§ͺ His interdisciplinary approach merges physics and materials science to advance quantum technologies, making significant strides in the field of nanoelectronics and superconductivity.

 

Publication Top Notes

  • Solid‐State Qubit as an On‐Chip Controller for Non‐Classical Field States
    • Published in 2024, cited by Advanced Quantum Technologies.
    • πŸ“„
  • Experimental study of the quantum phenomena in hybrid superconducting systems based on topological insulators
    • Published in 2024, cited by Higher School of Economics (HSE).
    • πŸ“–
  • Multilayer Bolometric Structures for Efficient Wideband Communication Signal Reception
    • Published in 2024, cited by Nanomaterials.
    • πŸ“š
  • Anomalous microwave response in the dissipative regime of topological superconducting devices based on Bi<sub>2</sub>Te<sub>2.3</sub>Se<sub>0.7</sub>
    • Published in 2023, cited by ArXiv.
    • πŸ“
  • Controlling I-V Hysteresis in Al/Pt Bilayer Symmetric SQUIDs at Millikelvin Temperatures
    • Published in 2023, cited by Symmetry.
    • πŸ“Š
  • Resonant Oscillations of Josephson Current in Nb-Bi<sub>2</sub>Te<sub>2.3</sub>Se<sub>0.7</sub>-Nb Junctions
    • Published in 2022, cited by Advanced Quantum Technologies.
    • 🌐
  • The Performance of Nonwoven PLLA Scaffolds of Different Thickness for Stem Cells Seeding and Implantation
    • Published in 2022, cited by Polymers.
    • πŸŽ“
  • Superconductivity in Hierarchical 3D Nanostructured Pb–In Alloys
    • Published in 2022, cited by Symmetry.
    • 🌌
  • Physical Vapor Deposition Features of Ultrathin Nanocrystals of Bi2(TexSe1–x)3
    • Published in 2022, cited by The Journal of Physical Chemistry Letters.
    • 🌟
  • Subjective Distance Estimates and Sense of Agency in Robotic Wheelchair Control
    • Published in 2022, cited by Applied Sciences.
    • πŸ€–