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钠基近零折射率薄膜中由非平衡电子动力学驱动的共振三次谐波产生。

Resonant third-harmonic generation driven by out-of-equilibrium electron dynamics in sodium-based near-zero index thin films.

作者信息

Silvestri Matteo, Sahoo Ambaresh, Assogna Luca, Benassi Paola, Ferrante Carino, Ciattoni Alessandro, Marini Andrea

机构信息

Department of Physical and Chemical Sciences, University of L'Aquila, Via Vetoio, 67100 L'Aquila, Italy.

CNR-SPIN, c/o Dipartimento to di Scienze Fisiche e Chimiche, Via Vetoio, Coppito, L'Aquila 67100, Italy.

出版信息

Nanophotonics. 2024 Jan 15;13(11):2003-2013. doi: 10.1515/nanoph-2023-0743. eCollection 2024 May.

Abstract

We investigate resonant third-harmonic generation in near-zero index thin films driven out-of-equilibrium by intense optical excitation. Adopting the Landau weak coupling formalism to incorporate electron-electron and electron-phonon scattering processes, we derive a novel set of hydrodynamic equations accounting for collision-driven nonlinear dynamics in sodium. By perturbatively solving hydrodynamic equations, we model third-harmonic generation by a thin sodium film, finding that such a nonlinear process is resonant at the near-zero index resonance of the third-harmonic signal. Thanks to the reduced absorption of sodium, we observe that third-harmonic resonance can be tuned by the impinging pump radiation angle, efficiently modulating the third-harmonic generation process. Furthermore, owing to the metallic sodium response at the pump optical wavelength, we find that the third-harmonic conversion efficiency is maximised at a peculiar thin film thickness where evanescent back-reflection provides increased field intensity within the thin film. Our results are relevant for the development of future ultraviolet light sources, with potential impact for innovative integrated spectroscopy schemes.

摘要

我们研究了在强光学激发下偏离平衡态的近零折射率薄膜中的共振三次谐波产生。采用朗道弱耦合形式来纳入电子 - 电子和电子 - 声子散射过程,我们推导出了一组新的流体动力学方程,用于描述钠中碰撞驱动的非线性动力学。通过微扰求解流体动力学方程,我们对钠薄膜的三次谐波产生进行了建模,发现这种非线性过程在三次谐波信号的近零折射率共振处发生共振。由于钠的吸收减少,我们观察到三次谐波共振可以通过入射泵浦辐射角度进行调谐,从而有效地调制三次谐波产生过程。此外,由于泵浦光波长处金属钠的响应,我们发现三次谐波转换效率在特定薄膜厚度处达到最大值,此时倏逝背反射会增加薄膜内的场强。我们的结果对于未来紫外光源的发展具有重要意义,对创新的集成光谱方案可能产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b748/11501270/e6fc86c76873/j_nanoph-2023-0743_fig_001.jpg

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