Self-diffraction at a dynamic photonic crystal formed in a colloidal solution of quantum dots


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Abstract

Self-diffraction at a one-dimensional dynamic photonic crystal formed in the colloidal solution of CdSe/ZnS quantum dots has been discovered. This self-diffraction appears simultaneously with self-diffraction at induced transparency channels at the resonant excitation of the main electron–hole (excitonic) transition of quantum dots by two laser beams with a Gaussian intensity distribution over the cross section. It is shown that a nonlinear change in the absorption of colloidal quantum dots results in the formation of a transparency channel and an induced amplitude diffraction grating, and a significant nonlinear change in the refractive index (Δn ≈ 10−3) in the absorbing medium is responsible for the formation of the dynamic photonic crystal. Self-diffracted laser beams are revealed propagating not only in directions corresponding to self-diffraction at the induced diffraction grating but also in directions satisfying the Laue condition.

About the authors

A. M. Smirnov

Faculty of Physics

Author for correspondence.
Email: hieroglifics@mail.ru
Russian Federation, Moscow, 119991

A. D. Golinskaya

Faculty of Physics

Email: hieroglifics@mail.ru
Russian Federation, Moscow, 119991

K. V. Ezhova

Faculty of Laser and Light Engineering

Email: hieroglifics@mail.ru
Russian Federation, St. Petersburg, 197101

V. N. Mantsevich

Faculty of Physics

Email: hieroglifics@mail.ru
Russian Federation, Moscow, 119991

V. S. Dneprovskii

Faculty of Physics

Email: hieroglifics@mail.ru
Russian Federation, Moscow, 119991

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