English

Emerging electro-optic molecular crystals for optoelectronic integration

Materials Science 2026-05-19 v1 Optics

Abstract

The rapid advancement of communication technology necessitates the development of hybrid optical modulators that integrate silicon photonics with electro-optic (EO) materials to enable ultrafast, low-power, and compact photonic devices. However, no existing material simultaneously meets the requirements for high EO performance, process compatibility, and thermal stability, which are essential for practical optoelectronic integration. Here, we present 4-(4'-nitrophenylazo)diphenylamine (NDPA) and its derivative, novel nonlinear optical molecular crystals discovered through materials screening incorporating crystal habit prediction. They demonstrate crystallization into high-quality aligned thin films and ultrafine silicon slot fillings through the capillary action of melts. The resulting EO performance much exceed that of conventional lithium niobate and are comparable to state-of-the-art EO polymers, with excellent thermal stability maintained for over 1000 hours at 393 K. The present EO materials satisfying all the requirements above are promising candidates for silicon-organic hybrid optical modulators, opening a significant step toward scalable and high-performance optoelectronic technologies.

Keywords

Cite

@article{arxiv.2508.02163,
  title  = {Emerging electro-optic molecular crystals for optoelectronic integration},
  author = {Keishi Sunami and Sachio Horiuchi and Yoriko Sonoda and Naomi Fujiki and Toshiki Higashino and Yuki Atsumi and Shoji Ishibashi and Jun'ya Tsutsumi},
  journal= {arXiv preprint arXiv:2508.02163},
  year   = {2026}
}

Comments

21 pages, 6 figures, 2 tables, Supporting Information attached at the end of the manuscript

R2 v1 2026-07-01T04:32:49.152Z