CONTEXTUALIZATION OF HISTORY AND DEVELOPMENT

Authors

  • Ruziev Kurbanali Abdujaborovich Tashkent Institute of Economics and Pedagogy, Uzbekistan

DOI:

https://doi.org/10.37547/ijasr-04-03-08

Keywords:

Optical Materials, Laser Systems, Nanostructured Materials

Abstract

The field of optical materials research stands at a pivotal juncture, driven by the relentless pursuit of advancements in laser technology. This study delves into the development and characterization of novel optical materials designed to enhance the performance and reliability of laser systems. Through a comprehensive investigation combining theoretical modeling, material synthesis, and empirical analysis, we identify key material properties that significantly influence laser efficiency and stability. Our research focuses on the exploration of new dopants, host materials, and fabrication techniques to achieve optimal thermal management, higher damage thresholds, and improved lasing efficiencies.

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References

Davis, M., et al. (2010). "Laser-Induced Damage in Optical Materials," Journal of Applied Physics, 108(3), 033103. Focuses on strategies for improving the LIDT of optical materials.

Kohn, W., Sham, L.J. (1965). "Self-Consistent Equations Including Exchange and Correlation Effects," Physical Review, 140(4A), A1133–A1138.

Allen, M.P., Tildesley, D.J. (1987). Computer Simulation of Liquids. Oxford University Press.

Zienkiewicz, O.C., Taylor, R.L. (2000). The Finite Element Method. Butterworth-Heinemann.

Boyd, R.W. (2008). Nonlinear Optics. Academic Press.

Jenkins, F.A., & White, H.E. (2001). Fundamentals of Optics. McGraw-Hill. This classic text provides foundational knowledge on optical principles that underpin spectroscopy and refractive index measurements.

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Published

2024-03-21

How to Cite

CONTEXTUALIZATION OF HISTORY AND DEVELOPMENT. (2024). International Journal of Advance Scientific Research, 4(03), 40-42. https://doi.org/10.37547/ijasr-04-03-08

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