Quantitative Polarization-Resolved Second-Harmonic-Generation Microscopy of Glycine Microneedles.

Gleeson, Matthew; O'Dwyer, Kevin; Guerin, Sarah; Rice, Daragh; Thompson, Damien; Tofail, Syed A M; Silien, Christophe; Liu, Ning · Adv Mater · 2020

basic_science · Level V

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Abstract

Second-harmonic generation (SHG) is a nonlinear optical process that can provide disease diagnosis through characterization of biological building blocks such as amino acids, peptides, and proteins. The second-order nonlinear susceptibility tensor χ<sup>(2)</sup> of a material characterizes its tendency to cause SHG. Here, a method for finding the χ<sup>(2)</sup> elements from polarization-resolved SHG microscopy in transmission mode is presented. The quantitative framework and analytical approach that corrects for micrometer-scale morphology and birefringence enable the determination and comparison of the SHG susceptibility tensors of β- and γ-phase glycine microneedles. The maximum nonlinear susceptibility coefficients are d<sub>33</sub>  = 15 pm V<sup>-1</sup> for the β and d<sub>33</sub>  = 5.9 pm V<sup>-1</sup> for the γ phase. The results demonstrate glycine as a useful biocompatible nonlinear material. This combination of the analytical model and polarization-resolved SHG transmission microscopy is broadly applicable for quantitative SHG material characterization and diagnostic imaging.

Medical subject headings