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Development of solid-state and fiber laser sources in the infrared range from 1.9 to 6 microns, with operating modes from continuous to generation of femtosecond pulses. Illumination of optical materials due to microstructuring of the surface. Experimental studies on the effects of laser radiation on biological tissues in order to develop diagnostic and surgical systems.

  1. Experimental research methods
  2. Mathematical modeling
Tarabrin, Mikhail Konstantinovich
Mikhail Tarabrin 🥼 🤝
Head of Laboratory

Research directions

Development of solid-state and fiber laser sources in the infrared range from 1.9 to 6 microns with operating modes from continuous to generation of femtosecond pulses

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Sources based on A2B6 chalcogenides doped with chromium ions, as well as fiber thulium lasers, are being developed

Illumination of optical materials due to microstructuring of the surface

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The developed technology allows the illumination of optical materials in a wide range of wavelengths while maintaining the value of the threshold of laser destruction, which is important for the tasks of creating high-power laser systems

Experimental studies on the effects of laser radiation on biological tissues in order to develop diagnostic and surgical systems

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The systems being developed will allow medical operations to be performed with minimal thermal damage to neighboring tissues

Publications and patents

Lab address

Москва, Рубцовская набережная, 2/18
Authorization required.