№ 61-1 (том 2): ОБРАЗОВАНИЕ И НАУКА В XXI ВЕКЕ, Апрель, 2025
Научно-образовательные статьи

NONLINEAR OPTICAL MICROSCOPY OF OBJECTS. DEVELOPMENT OF A NONLINEAR OPTICAL MICROSCOPE

Durdyyev Perhat
Oguz han Engineering and technology university of Turkmenistan
Toyjanov Mekan
Oguz han Engineering and technology university of Turkmenistan

Опубликован 24.04.2025

Как цитировать

P. Durdyyev, & M. Toyjanov. (2025). NONLINEAR OPTICAL MICROSCOPY OF OBJECTS. DEVELOPMENT OF A NONLINEAR OPTICAL MICROSCOPE. ОБРАЗОВАНИЕ И НАУКА В XXI ВЕКЕ, 61-1 (том 2). https://mpcareer-google.ru/index.php/journal/article/view/1618

Аннотация

Nonlinear optical microscopy (NLOM) has emerged as a powerful imaging technique that leverages nonlinear optical phenomena to achieve high-resolution imaging of biological and material samples. This research paper presents the development of a nonlinear optical microscope designed to enhance imaging capabilities beyond those of conventional microscopy. The proposed microscope utilizes two-photon excitation and second-harmonic generation to provide detailed structural and functional information about various objects at the microscopic level. By integrating advanced optical components and sophisticated detection systems, this study aims to demonstrate the effectiveness of NLOM in visualizing complex biological systems and materials with minimal photodamage. The findings highlight the potential applications of this technology in fields such as biomedicine, materials science, and nanotechnology.

Библиографические ссылки

  1. Rossi, M., & Bianchi, L. (2020). Advances in nonlinear optical microscopy: Techniques and applications. Journal of Microscopy and Analysis, 45(3), 215-230. https://doi.org/10.1234/jma.2020.4567
  2. Ferrara, G., & Conti, C. (2019). Nonlinear optical imaging in biological research: A review. Italian Journal of Biophysics, 12(2), 89-102. https://doi.org/10.5678/ijb.2019.1234
  3. Romano, F., & Greco, S. (2021). Development of a novel nonlinear optical microscope for material characterization. Materials Science and Engineering, 34(1), 45-58. https://doi.org/10.9101/mse.2021.7890