MGMF

Self-Assembly-Based Micro- and Nanostructure Fabrication

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Micro- and nanostructure fabrication using self-assembly methods for large-area photonic structures and functional surfaces in optical, sensing, and catalytic applications.

Advanced Nanomaterials Synthesis for Photonics and Energy Applications

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Synthesis and investigation of advanced nanomaterials and nanostructures for photonic and energy solutions, enabling the development of functional materials for light and energy management technologies.

Micro- and Nanostructure

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Fabrication of micro- and nanostructures and thin-film architectures in a cleanroom environment using advanced lithography, etching, and thin-film deposition techniques, complemented by optical property modeling.

Physics Experiment Laboratory

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The physics experiment laboratory provides an opportunity to explore the phenomena of mechanics, electromagnetism, optics, and atomic physics in practice using reliable laboratory equipment adapted for teaching. Measurements, observations, and experiments allow students to verify the validity of the

Interactive physics demonstrations

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Interactive physics demonstrations provide an engaging and clear presentation of fundamental physics phenomena, allowing you to see how the laws of physics work in real life, while the presentation helps you understand the essence of the phenomena, their interrelationships, and their applications.

Materials Physics Laboratory

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Interactive laboratory work in materials physics, allowing practical exploration of the properties of materials and the effects of physical phenomena using educational laboratory equipment.

Material Composition, Structure, Surface, and Optical Characterization and Spectroscopy

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We perform advanced material composition, structure, surface, and optical property characterization using state-of-the-art imaging and spectroscopy methods for research, technology development, and industry.

Laser micro-structuring of materials

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Laser microstructuring of materials using ultrashort pulse lasers with IR, visible, and UV radiation for high-precision microstructures, minimal thermal effects, and superior surface quality.