Blue-shifted dispersive waves and broadband UV emission using dual-core SiN waveguidesOpen Access

Xia, L.; Van der Slot, P. J. M.; Timmerkamp, M.; Fallnich, C., Boller, K.-J.

Research article (journal) | Peer reviewed

Abstract

We show that using strongly coupled dual-core waveguides for supercontinuum generation shifts the wavelength of the high-frequency dispersive waves towards shorter wavelengths, as compared to generation in a single-core waveguide having the same core dimensions. In a demonstration experiment, we launch ultrashort infrared pump pulses at 1-μm wavelength (285-THz frequency) into silicon nitride waveguides, where soliton formation and fission leads to generation of dispersive waves in the visible range. Efficient input coupling and controlled excitation of the two lowest order supermodes of the dual-core waveguide is provided with adiabatic tapers and a dual-prong input structure. For the dual-core waveguide, the short-wavelength dispersive wave is located at 540 nm (green, 555 THz), which is blue-shifted by 80 nm (70 THz) compared to that of the single-core waveguide. Simultaneously, the dual-core waveguide generates broadband radiation spanning from the blue into the UV range, reaching to below 350 nm (above 855 THz), with typically a spectral density 25 dB below that of the dispersive wave. The broadband component can be attributed to third harmonic generation and is not observed in single-core supercontinuum generation. Numerical modeling shows good agreement with experimental measurements. The demonstrated dual-core approach and dedicated input coupling appear to hold promise also for other waveguide structures, independent of specific materials or core dimensions, by providing shorter wavelengths than with the respective single-core waveguide.

Details about the publication

JournalOptics Express (Opt. Express)
Volume34
Issue5
Page range9113-9128
StatusPublished
Release year2026
Language in which the publication is writtenEnglish
DOI10.1364/OE.587973
Link to the full texthttps://doi.org/10.1364/OE.587973
Keywordsdispersive waves; broadband UV emission; SiN waveguides; ultrashort infrared pump pulses; cual-core waveguide;

Authors from the University of Münster

Fallnich, Carsten
Professur für Angewandte Physik (Prof. Fallnich)
Timmerkamp, Maximilian
Professur für Angewandte Physik (Prof. Fallnich)