Epsilon-near-zero nonlinearity enhancement in EUV
Experimental demonstration of EUV plasmon-enhanced self-driven spectral modification
Ferrante, C. et al.,Light Sci Appl 14, 374 (2025)
We present the first experimental demonstration of extreme ultraviolet (XUV) plasmon-enhanced self-driven spectral modification using a submicrometric foil of aluminium. This is achieved through the excitation of widely tunable Ferrell-Berreman epsilon-near-zero resonances with extremely low absorption. Our angle-dependent measurements of spectral modulation enhancement, supported by theoretical analysis, reveal efficient spectral modification at peak intensities as low as 380 GW/cm2, which we attribute to ultrafast heating and saturation effects.
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Last Updated on Thursday, 13 November 2025 20:02
