Logo image
Phase Matched Plasmonic Transmission Lines for Sequential Second-Harmonic Generation as a Pathway to Nonlinear Logic Circuits
期刊文章

Phase Matched Plasmonic Transmission Lines for Sequential Second-Harmonic Generation as a Pathway to Nonlinear Logic Circuits

Komal Gupta, Anand Hegde, Xiaofei Wu, Jer-Shing Huang 和 Chen-Bin Huang
Advanced optical materials, 卷.14(12), e03409
01/03/2026
Web of Science ID: WOS:001712030100001

摘要

Materials Science, Multidisciplinary Science & Technology Materials Science Optics Physical Sciences Technology
In nonlinear nanophotonics, scalable sequential signal transformation of second-harmonic generation (SHG) in pure plasmonic waveguides remains challenging. Precise phase matching becomes instrumental to achieve efficient SHG and enable sequential generation of nonlinear signals. We experimentally demonstrate the phase matching in SHG between two orthogonal modes through dispersion engineering. Accurate tuning of plasmonic two-wire transmission-line (TWTL) design parameters results in SHG from the antisymmetric excitation mode being approximately 15 times stronger than that from the symmetric excitation mode, greatly raising the conversion efficiency to . Simultaneously, the measured devices show that the phase matching extends our TWTL operational length at least up to . Based on the improved efficiency and operational length, we demonstrate a multi-stage device capable of performing polarization-dependent switching between the linear propagation of SHG and frequency up-conversion in the later stages. We further realize a nonlinear OR logic operation using a single long waveguide. These results underscore the potential of phase-matched plasmonic TWTLs for compact, efficient, and scalable nonlinear optical circuitry.

相關連結

指標

1 檢視次數

詳細資料

Logo image