A Fluorimeter on the Basis of a Femtosecond Cr+4: Forsterite Laser


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Abstract

An apparatus for measuring luminescence lifetimes using the femtosecond up-conversion method is presented. A laser system based on a chromium–forsterite crystal with a lasing wavelength of 1250 nm is used to generate ultrashort pulses. Luminescence is excited in a sample by optical harmonics that are generated in nonlinear optical crystals. The width of the instrument function of the system is 200 fs. Methods for optimizing the signal-to-noise ratio in measurements are discussed. The results of measurements of the fluorescence- decay dynamics and the anisotropy of aqueous solutions of an inclusion complex of the 4-DASPI styrene dye in cucurbit[6]uril on short (5 ps) and long (500 ps) time scales are presented.

About the authors

Yu. A. Shandarov

Center of Photochemistry, Crystallography and Photonics Federal Research Center

Author for correspondence.
Email: msshandos@mail.ru
Russian Federation, Moscow, 119421

I. V. Kryukov

Center of Photochemistry, Crystallography and Photonics Federal Research Center

Email: msshandos@mail.ru
Russian Federation, Moscow, 119421

D. A. Ivanov

Center of Photochemistry, Crystallography and Photonics Federal Research Center

Email: msshandos@mail.ru
Russian Federation, Moscow, 119421

A. A. Ivanov

Center of Photochemistry, Crystallography and Photonics Federal Research Center

Email: msshandos@mail.ru
Russian Federation, Moscow, 119421

N. Kh. Petrov

Center of Photochemistry, Crystallography and Photonics Federal Research Center; Moscow Institute of Physics and Technology

Email: msshandos@mail.ru
Russian Federation, Moscow, 119421; Dolgoprudnyi, Moscow oblast, 141700

M. V. Alfimov

Center of Photochemistry, Crystallography and Photonics Federal Research Center; Moscow Institute of Physics and Technology

Email: msshandos@mail.ru
Russian Federation, Moscow, 119421; Dolgoprudnyi, Moscow oblast, 141700

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