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Computer Science and Education in Computer Science. 20th EAI International Conference, CSECS 2024, Sofia, Bulgaria, June 28–30, 2024, Proceedings

Research Article

Applications of Simulation Modeling and Computer Visualizations for Studying Structured Crystals for Implementation in Technical Devices

Cite
BibTeX Plain Text
  • @INPROCEEDINGS{10.1007/978-3-031-84312-9_16,
        author={Yoana Ivanova},
        title={Applications of Simulation Modeling and Computer Visualizations for Studying Structured Crystals for Implementation in Technical Devices},
        proceedings={Computer Science and Education in Computer Science. 20th EAI International Conference, CSECS 2024, Sofia, Bulgaria, June 28--30, 2024, Proceedings},
        proceedings_a={CSECS},
        year={2025},
        month={3},
        keywords={synthetic ruby ruby crystal ruby laser simulation modeling computer visualization},
        doi={10.1007/978-3-031-84312-9_16}
    }
    
  • Yoana Ivanova
    Year: 2025
    Applications of Simulation Modeling and Computer Visualizations for Studying Structured Crystals for Implementation in Technical Devices
    CSECS
    Springer
    DOI: 10.1007/978-3-031-84312-9_16
Yoana Ivanova1,*
  • 1: New Bulgarian University, 21 Montevideo Street
*Contact email: yivanova@nbu.bg

Abstract

This paper aims to present an experimental study of structured crystals, which has been realized by the integrated use of software products for assessment and analysis of crystal lattices, as well as the building of their three-dimensional color profiles based on the author’s microscopic images with a view to subsequently importing them into agent-based simulation environment models for visualization of crystal growth.

The generated results can contribute to extending previous author’s research, united in a methodology for the optimization of structured crystals for telecommunication and scientific-technological applications, in which the object of the microscopic and simulation studies are the quartz crystals and the possibilities of their implementation in technical devices such as quartz filters and resonators.

In the present research the focus is placed on simulation methods for the study of ruby crystals after their preliminary optimization. This approach is justified by their possible applications in laser systems, temperature sensor components of modern 3D printers, and medical devices, which aim to increase the efficiency of industrial processes.

Keywords
synthetic ruby ruby crystal ruby laser simulation modeling computer visualization
Published
2025-03-14
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-031-84312-9_16
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