Welcome to my digital laboratory. I am an undergraduate physics student and researcher driven by a fascination with how engineered subwavelength structures control light at the nanoscale. My primary research identity is centered on Metaoptics, Computational Photonics, and the intersection of flat optics with Machine Learning.

Currently, I serve as an Undergraduate Researcher at the Nonlinear Optics Laboratory within the Department of Physics at Shahjalal University of Science and Technology (SUST).


Research Focus & Interests

My research focuses on leveraging modern computational tools to design, simulate, and understand advanced optical phenomena, replacing bulky conventional optics with ultra-compact metasurfaces.

  • Metaoptics & Metasurfaces: Engineering meta-atoms to control the phase, amplitude, and polarization of light for applications like metalenses.
  • Computational Photonics: Utilizing Finite-Difference Time-Domain (FDTD) methods and numerical solvers to model complex electromagnetic fields and nanostructures.
  • Machine Learning for Optics: Developing data-driven frameworks and inverse design techniques to accelerate the discovery of novel photonic structures and nonlinear optical materials.

Academic & Research Experience

Undergraduate Researcher

Nonlinear Optics Laboratory, SUST | December 2024 – Present

  • Conducting waveguide simulations and constructing predictive machine learning models for materials science applications.
  • Utilizing data analysis frameworks to parse, clean, and visualize complex experimental and theoretical datasets.

Assistant Cultural Secretary

SUST Physics Society | Active

  • Organizing community events, academic seminars, and cultural programs to build an engaging, collaborative environment for physics scholars and enthusiasts.

Education

B.Sc. (Hons) in Physics

Shahjalal University of Science and Technology (SUST)

  • Current Standing: 3rd Year, 2nd Semester
  • Cumulative GPA: 3.80 / 4.00

Awards & Achievements

  • Bronze Medal – University Physics Competition (UPC), 2025 Represented SUST in a global competitive framework, applying advanced physics principles and numerical modeling to solve rigorous, open-ended real-world challenges under strict time constraints.

Technical Toolkit

  • Programming & Data Science: Python (NumPy, Pandas, Seaborn, Scikit-Learn)
  • Scientific Visualization: Manim (Mathematical Animation Engine), Chart.js
  • Typesetting & Workflows: LaTeX, Overleaf, Markdown, Git/GitHub CLI
  • Environment: Arch Linux, VS Code

Beyond the Equations

When I am not writing scripts or analyzing optical simulations, I run the Physics & Philosophy Lab blog. I deeply believe that the rigid structures of mathematical physics and the abstract inquiries of philosophy are two sides of the same coin—both trying to map the foundational truths of our reality.

If you are interested in collaboration, research partnerships, or simply want to debate optimization theory, feel free to reach out via email or connect with me on LinkedIn.


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