Simultaneous corona poling of multiple glass layers for enhanced effective second-order optical nonlinearities
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- Abstract
Silica-based thin-film multilayers are investigated as a means to enhance the effective second-order nonlinearity induced in silica glass structures by corona poling. Structures consisting of phosphorus-doped and undoped silica glass layers exhibit second harmonic generation (SHG) that is higher by an order of magnitude compared to the SHG in bulk silica glass poled under the same conditions. When the poled structure consists of two multilayered stacks separated in space, the stacks exhibit comparable poling-induced nonlinearities. This result suggests that the poling voltage is divided between the two stacks such that simultaneous poling of multiple regions within the sample is realized.
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Version of Record (VOR). May be deposited in an institutional repository 12 months after publication, with the credit line and a link to the VOR on AIP Publishing’s site. See https://publishing.aip.org/resources/researchers/rights-and-permissions/sharing-content-online/
- Citation
- Smelser, C, Jacob, S. (S.), Blanchetiere, C. (C.), Callender, C.L. (C. L.), Albert, J, & Yadav, Ksenia. (2011). Simultaneous corona poling of multiple glass layers for enhanced effective second-order optical nonlinearities. Applied Physics Letters, 99(3). doi:10.1063/1.3614435
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- 2011-07-18
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