Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

Photorefractive laser beam modulator

Not Accessible

Your library or personal account may give you access

Abstract

We create an interferometric closed-loop by recording a set of three volume gratings inside a photorefractive BaTiOs crystal. These gratings divide a single input beam into two beams that interfere in the far-field. The diffraction efficiency of the gratings depends on the angle between the grating vector and the c-axis, the full angle between the writing beams and their intensity ratio. A PZT-driven mirror phase modulates one of the writing beams that result in a beam modulation rate of up to 700 Hz. This demonstrates the feasibility of a photorefractive crystal as a laser beam modulator. Laser beam modulation is also carried out in LiNbO3 crystal. Two physical geometries have been considered with this crystal. We record only two gratings to form an interferometric path. In this case, applying an external ac electric field to the crystal along the path of one arm of the interferometer results in the desired modulated output. We also describe a theoretical model for an efficient photorefractive beam modulator.

© 2001 Optical Society of America

PDF Article
More Like This
Adaptive shaping and filtering of laser beams using photorefractive elements

Gérald Roosen, Antoine Codard, Laurent Meilhac, Nicolas Dubreuil, Jean Michel Jonathan, and Gilles Pauliat
CWH1 Conference on Lasers and Electro-Optics (CLEO:S&I) 2001

Polarization-independent two-channel MUX/DEMUX using a photorefractive lithium niobate crystal

M. Nagel, A. Siahmakoun, and J. Chestnut
77 Photorefractive Effects, Materials, and Devices (PR) 2001

Wealth of dynamic regimes for feedback-controlled photorefractive beam coupling

E. V. Podivilov, B. I. Sturman, S. G. Odoulov, S. M. Pavlyuk, K. V. Shcherbin, V. Ya. Gayvoronsky, K. H. Ringhofer, and V. P. Kamenov
221 Photorefractive Effects, Materials, and Devices (PR) 2001

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.