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Extended sphere method for complete investigation of the phase-matching properties of sum- and difference-frequency generation

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Abstract

We demonstrate the feasibility of a complete experimental investigation of the phase-matching properties of sum- and difference-frequency generation in a single crystal cut as a sphere over its entire transparency range. The class of the studied crystal is the only initial data that is required. This feasibility study was carried out with rubidium titanyl arsenate.

© 1999 Optical Society of America

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