paper

A Normalized Descriptor for Unbiased Screening of Second-Order Nonlinear Optical Materials

arXiv:2511.03038 · doi:10.1021/acsphotonics.5c02758

Abstract

Second-order nonlinear optical materials enable frequency doubling of light (second-harmonic generation, SHG), which is essential for optoelectronic applications ranging from materials characterization to quantum technologies. However, comparing SHG performance across materials remains challenging as the second-order nonlinear susceptibility spans several orders of magnitude and strongly depends on the band gap . To address this, we empirically validate a theoretical upper bound on using new databases of \textit{ab initio}-computed nonlinear optical (NLO) properties. We then formulate a normalized descriptor, , which expresses the NLO response of a material relative to the band gap-dependent physical limit. We show that exhibits a similar distribution across a wide range of band gap energies. This universality supports the use of as a robust, generalizable descriptor for data-driven and chemistry-informed machine learning models of NLO response, enabling accelerated materials discovery and optimization across broad application frequencies.

20 pages, 3 figures

A Normalized Descriptor for Unbiased Screening of Second-Order Nonlinear Optical Materials · wovepaper