Abstract
We report a new, to the best of our knowledge, approach to phase
matching of nonlinear materials based on the free-space multipass
cells. This technique is applicable to noncentrosymmetric nonlinear
crystals, including crystals that cannot be birefringent phase-matched
or quasi-phase matched by periodic poling. Notably, by using this
approach, the crystalline quartz is quasi-phase matched with the
demonstrated increase of the second harmonic generation efficiency by
a factor of 40. The method can be extended toward UV and THz ranges.
This promises to revolutionize experimental nonlinear optics and all
applications by increasing the number of available crystals for
quasi-phase matching by at least one order of magnitude and brings
fresh motivation for developing novel nonlinear materials.
Subject
Atomic and Molecular Physics, and Optics
Cited by
1 articles.
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