Suppr超能文献

纳米级极化瞬态光栅

Nanoscale polarization transient gratings.

作者信息

Foglia Laura, Wehinger Björn, Perosa Giovanni, Mincigrucci Riccardo, Allaria Enrico, Armillotta Francesco, Brynes Alexander, Copus Matthew, Cucini Riccardo, De Angelis Dario, De Ninno Giovanni, Engel W Dieter, Fainozzi Danny, Giannessi Luca, Iacocca Ezio, Khatu Nupur N, Laterza Simone, Paltanin Ettore, Pelli-Cresi Jacopo Stefano, Penco Giuseppe, Puntel Denny, Rebernik Ribič Primož, Sottocorona Filippo, Trovò Mauro, von Korff Schmising Clemens, Yao Kelvin, Masciovecchio Claudio, Bonetti Stefano, Bencivenga Filippo

机构信息

Elettra - Sincrotrone Trieste S.C.p.A., S.S. 14 km 163.5 in Area Science Park, 34149, Trieste, Italy.

Department of Molecular Sciences and Nanosystems, Ca' Foscari University of Venice, 30172, Venezia, Italy.

出版信息

Nat Commun. 2024 Dec 30;15(1):10742. doi: 10.1038/s41467-024-54799-6.

Abstract

Light manipulation at the nanoscale is essential both for fundamental science and modern technology. The quest to shorter lengthscales, however, requires the use of light wavelengths beyond the visible. In particular, in the extreme ultraviolet regime these manipulation capabilities are hampered by the lack of efficient optics, especially for polarization control. Here, we present a method to create periodic, polarization modulations at the nanoscale using a tailored configuration of the FERMI free electron laser and demonstrate its capabilities by comparing the dynamics induced by this polarization transient grating with those driven by a conventional intensity grating on a thin ferrimagnetic alloy. While the intensity grating signal is dominated by the thermoelastic response, the polarization grating excitation minimizes it, uncovering helicity-dependent responses previously undetected. We anticipate nanoscale polarization transient gratings to become useful for the study of physical, chemical and biological systems possessing chiral symmetry.

摘要

纳米尺度下的光操控对于基础科学和现代技术都至关重要。然而,追求更短的长度尺度需要使用可见光以外的光波长。特别是在极紫外波段,这些操控能力因缺乏高效光学元件而受到阻碍,尤其是在偏振控制方面。在此,我们提出一种方法,利用费米自由电子激光的定制配置在纳米尺度上创建周期性的偏振调制,并通过将这种偏振瞬态光栅诱导的动力学与传统强度光栅在薄铁磁合金上驱动的动力学进行比较来展示其能力。虽然强度光栅信号主要由热弹性响应主导,但偏振光栅激发将其最小化,揭示了以前未检测到的与螺旋度相关的响应。我们预计纳米尺度的偏振瞬态光栅将有助于研究具有手性对称性的物理、化学和生物系统。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验