2023
DOI: 10.3390/photonics10050545
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Nonlinear Optical Materials: Predicting the First-Order Molecular Hyperpolarizability of Organic Molecular Structures

Abstract: Experimental nonlinear optics (NLO) is usually expensive due to the high-end photonics and electronic devices needed to perform experiments such as incoherent second harmonic generation in liquid phase, multi-photon absorption, and excitation. Nevertheless, exploring NLO responses of organic and inorganic compounds has already opened a world of new possibilities. For example, NLO switches, NLO frequency converters, and a new way to obtain biological images through the incoherent second harmonic generation (SHG… Show more

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Cited by 5 publications
(6 citation statements)
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“…The computational methodology consisted of three steps: molecular structure geometry optimization, calculating the one-photon vertical excitation energies, and computing the tensor components of the first-order molecular hyperpolarizability. Then, Hyper-QCC [19], a post-processing software dedicated to computing third-order ranking tensor components in a fast and reliable way, was used for the final calculation of β 0 and β HRS values.…”
Section: Computational Methodology Detailsmentioning
confidence: 99%
See 3 more Smart Citations
“…The computational methodology consisted of three steps: molecular structure geometry optimization, calculating the one-photon vertical excitation energies, and computing the tensor components of the first-order molecular hyperpolarizability. Then, Hyper-QCC [19], a post-processing software dedicated to computing third-order ranking tensor components in a fast and reliable way, was used for the final calculation of β 0 and β HRS values.…”
Section: Computational Methodology Detailsmentioning
confidence: 99%
“…The post-processing software Hyper-QCC [19] calculates the first-molecular hyperpolarizability based on the mixed spherical-cartesian formalism [59], in which the orientational averaged first-order hyperpolarizability squared β HRS is expressed by Equation ( 1) [60].…”
Section: Computational Methodology Detailsmentioning
confidence: 99%
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“…Hyper-Rayleigh scattering (HRS) is one of the experimental techniques used to measure the intensity of the incoherently scattered frequency-doubled light generated after the interaction of a laser beam with a chromophore in an isotropic solution [99]. As optical communication networks evolve, the research and development of new compounds with NLO performance is of significant importance for improving this field [100,101].…”
Section: Hyper-rayleigh Scatteringmentioning
confidence: 99%