Micro electronics components
Future scientist in process, ready to contribute to cutting-edge optics and technology research. Proven ability to drive significant advancements through strong analytical skills and innovative problem-solving. Effective collaborator with focus on achieving measurable results and adapting to evolving project requirements. Skilled in quantum mechanics, laser physics, and mass spectroscopy
Multi-disciplinary
Advanced materials science
Condensed matter physics background
Experimental Physics
Physics of Nanosystems
Semiconductor device physics
Friendly, positive attitude
Teamwork and collaboration
Verbal communication
Problem-solving
As a highly observant student with a keen awareness of my surroundings, I am driven to identify and address the complex challenges facing our society. My academic and research interests are deeply rooted in the exploration of solutions at the nanoscale, where I believe true innovation begins. I am not only committed to understanding existing knowledge, but also to pushing its boundaries—constantly seeking to experiment with new ideas and approaches that can lead to meaningful advancements in scientific research.
Micro electronics components
Artificial Intelligence
Nanofabrication of materials
Semi and superconductors
Science communication of quantum mechanics: Passionate about science, I strive to explain even the most complex concepts in a way that anyone—even a child—can understand. I am currently collaborating with researchers from my university to create a permanent exhibition at my local museum, aiming to make knowledge of quantum mechanics accessible to the general public.
Linguistic Club of Complex Terms: Science does not have a universally defined language, so my friends and I created a space where we "play" at science communication in multiple languages. Our goal is to be able to share ideas with international researchers and understand their papers, breaking language barriers in the scientific community.