Organic materials for second harmonic generation. Final report

Органические материалы для генерации второй гармоники. Итоговый отчет
Robert J. Twieg
1985-03-31

Langmuir-Blodgett filmsmolecular hyperpolarizabilitynoncentrosymmetric crystalline compoundsorganic nonlinear optical materialssecond harmonic generation
Materials were chosen by screening the Cambridge Crystallographic Index for new noncentrosymmetric crystalline compounds, by screening commercially available materials or by synthesis of unique new substances. Measurements were then made on the powder form of these materials. Langmuir-Blodgett films were deposited and studied. In addition to the above studies, a computer program was developed to calculate (hyper) polarizabilities of organic molecules and thus aid in the selection of materials for testing. The nonlinear molecules have been divided into three classes according to absorption cutoff: 400 to 500 nm, 300 to 400 nm, and 200 to 300 nm. 108 refs., 7 tabs. (WRF)
1
A computer program was developed to calculate molecular (hyper)polarizabilities and support the selection of candidate materials for testing.
2
Langmuir–Blodgett films of the materials were deposited and studied as an additional form of nonlinear-optical material.
3
Organic materials for second-harmonic generation were identified through crystallographic database screening, commercial-material screening, and synthesis of new compounds.
4
The nonlinear molecules were classified into three groups based on absorption cutoff ranges: 400–500 nm, 300–400 nm, and 200–300 nm.
5
The selected materials were experimentally evaluated in powder form for their second-harmonic-generation properties.

Organic noncentrosymmetric crystalline materials and Langmuir–Blodgett films for second-harmonic generation

Their second-order nonlinear optical response and its relationship to molecular (hyper)polarizability and absorption cutoff

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1985-03-31
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Robert J. Twieg
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