From Ewald sphere to Ewald shell in nonlinear optics

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Abstract

Ewald sphere is a simple vector scheme to depict the X-ray Bragg diffraction in a crystal. A similar method, known as the nonlinear Ewald sphere, was employed to illustrate optical frequency conversion processes. We extend the nonlinear Ewald sphere to the Ewald shell construction. With the Ewald shell, a variety of quasi-phase-matching (QPM) effects, such as the collective envelope effect associated with multiple QPM resonances, the enhanced second- harmonic generation due to multiple reciprocal vectors etc., are suggested theoretically and verified experimentally. By rotating the nonlinear photonic crystal sample, the dynamic evolution of these QPM effects has also been observed, which agreed well with the Ewald shell model.

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Huang, H., Huang, C. P., Zhang, C., Hong, X. H., Zhang, X. J., Qin, Y. Q., & Zhu, Y. Y. (2016). From Ewald sphere to Ewald shell in nonlinear optics. Scientific Reports, 6. https://doi.org/10.1038/srep29365

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