Sub-wavelength modulation of χ<sup>(2)</sup> optical nonlinearity in organic thin films.

Yan, Yixin; Yuan, Yakun; Wang, Baomin; Gopalan, Venkatraman; Giebink, Noel C · Nat Commun · 2017

basic_science · Level V

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Abstract

Modulating the second-order nonlinear optical susceptibility (χ<sup>(2)</sup>) of materials at the nanoscale represents an ongoing technological challenge for a variety of integrated frequency conversion and nonlinear nanophotonic applications. Here we exploit the large hyperpolarizability of intermolecular charge transfer states, naturally aligned at an organic semiconductor donor-acceptor (DA) interface, as a means to control the magnitude and sign of χ<sup>(2)</sup> at the nanoscale. Focusing initially on a single pentacene-C<sub>60</sub> DA interface, we confirm that the charge transfer transition is strongly aligned orthogonal to the heterojunction and find that it is responsible for a large interfacial nonlinearity probed via second harmonic generation that is sufficient to achieve d<sub>33</sub>>10 pm V<sup>-1</sup>, when incorporated in a non-centrosymmetric DA multilayer stack. Using grating-shadowed oblique-angle deposition to laterally structure the DA interface distribution in such multilayers subsequently enables the demonstration of a χ<sup>(2)</sup> grating with 280 nm periodicity, which is the shortest reported to date.