Towards higher electro-optic response in AlScN

H Haochen Wang (Smart Hybrid Materials (SHMs) Laboratory, Physical Science and Engineering (PSE) Division) S Sai Mu (Department of Physics and Astronomy) C Chris G. Van de Walle (Materials Department, University of California Santa Barbara , Santa Barbara, California 93106,)

Abstract

Novel materials with large electro-optic (EO) coefficients are essential for developing ultra-compact broadband modulators and enabling effective quantum transduction. Compared to lithium niobate, the most widely used nonlinear optical material, wurtzite AlScN, offers advantages in nano-photonic devices due to its compatibility with integrated circuits. We perform detailed first-principles calculations to investigate the electro-optic effect in Al1−xScxN alloys and superlattices. At elevated Sc concentrations in alloys, the EO coefficients increase; importantly, we find that cation ordering along the c axis leads to enhanced EO response. Strain engineering can be used to further manipulate the EO coefficients of AlScN films. With applied in-plane strains, the piezoelectric contributions to the EO coefficients increase dramatically, even exceeding 250 pm/V. We also explore the possibility of EO enhancement through superlattice engineering, finding that nonpolar a-plane (AlN)m/(ScN)n superlattices increase EO coefficients beyond 40 pm/V. Our findings provide design principles to enhance the electro-optic effect through alloy engineering and heterostructure architecture.

Article Details

Volume / Issue Vol. 126, Issue 4
Published January 27, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (3)

H

Haochen Wang

Smart Hybrid Materials (SHMs) Laboratory, Physical Science and Engineering (PSE) Division

S

Sai Mu

Department of Physics and Astronomy

C

Chris G. Van de Walle

Materials Department, University of California Santa Barbara , Santa Barbara, California 93106,