Silvestri Matteo, Venturi Matteo, Di Muzio Mattia, Adhikary Raju, Ferrante Carino, Benassi Paola, Marini Andrea
Department of Physical and Chemical Sciences, University of L'Aquila, Via Vetoio, 67100 L'Aquila, Italy.
CNR-SPIN, c/o Dip.to di Scienze Fisiche e Chimiche, Via Vetoio, Coppito (L'Aquila) 67100, Italy.
J Chem Phys. 2024 Aug 7;161(5). doi: 10.1063/5.0210865.
We investigate the contribution of inelastic electron collisions to nonlinear (NL) dynamics in ultraviolet plasmonic nanoparticles, exploring their potential for harmonic generation. Employing the Landau weak coupling formalism to model radiation-driven electron dynamics in sodium and aluminum, we account for both electron-electron and electron-phonon scattering processes by a set of hydrodynamic equations, which we solve perturbatively to obtain third-order NL susceptibilities. Furthermore, we model high harmonic generation enhanced by localized surface plasmons in nanospheres composed of such poor metals, demonstrating their efficient operation for extreme ultraviolet generation. Our investigation reveals that plasmonic nanospheres composed of sodium and aluminum produce a large field intensity enhancement of ≃103-105, boosting the harmonic generation process. Our findings indicate that poor metals hold great promise for advanced extreme ultraviolet nano-sources with potential applications in nano-spectroscopy.
我们研究了非弹性电子碰撞对紫外等离子体纳米颗粒中非线性(NL)动力学的贡献,探索了它们产生谐波的潜力。采用朗道弱耦合形式来模拟钠和铝中辐射驱动的电子动力学,我们通过一组流体动力学方程来考虑电子-电子和电子-声子散射过程,并通过微扰求解这些方程以获得三阶NL极化率。此外,我们对由这类不良金属组成的纳米球中局域表面等离子体增强的高次谐波产生进行了建模,证明了它们在极紫外产生方面的高效运行。我们的研究表明,由钠和铝组成的等离子体纳米球产生了约10³ - 10⁵的大场强增强,促进了谐波产生过程。我们的研究结果表明,不良金属在具有纳米光谱潜在应用的先进极紫外纳米源方面具有巨大潜力。