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利用高次谐波产生提取固体中的高阶非线性电子响应。

Extraction of higher-order nonlinear electronic response in solids using high harmonic generation.

作者信息

Han Seunghwoi, Ortmann Lisa, Kim Hyunwoong, Kim Yong Woo, Oka Takashi, Chacon Alexis, Doran Brent, Ciappina Marcelo, Lewenstein Maciej, Kim Seung-Woo, Kim Seungchul, Landsman Alexandra S

机构信息

Department of Mechanical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Yuseong-gu, Daejeon, 34141, South Korea.

Institute for the Frontier of Attosecond Science and Technology, CREOL and Department of Physics, University of Central Florida, Orlando, FL, 32816, USA.

出版信息

Nat Commun. 2019 Jul 22;10(1):3272. doi: 10.1038/s41467-019-11096-x.

Abstract

Nonlinear susceptibilities are key to ultrafast lightwave driven optoelectronics, allowing petahertz scaling manipulation of the signal. Recent experiments retrieved a 3rd order nonlinear susceptibility by comparing the nonlinear response induced by a strong laser field to a linear response induced by the otherwise identical weak field. The highly nonlinear nature of high harmonic generation (HHG) has the potential to extract even higher order nonlinear susceptibility terms. However, up till now, such characterization has been elusive due to a lack of direct correspondence between high harmonics and nonlinear susceptibilities. Here, we demonstrate a regime where such correspondence can be clearly made, extracting nonlinear susceptibilities (7th, 9th, and 11th) from sapphire of the same order as the measured high harmonics. The extracted high order susceptibilities show angular-resolved periodicities arising from variation in the band structure with crystal orientation. Our results open a door to multi-channel signal processing, controlled by laser polarization.

摘要

非线性极化率是超快光波驱动光电子学的关键,它能实现对信号的太赫兹级缩放操控。最近的实验通过将强激光场诱导的非线性响应与其他条件相同的弱场诱导的线性响应进行比较,获取了三阶非线性极化率。高次谐波产生(HHG)的高度非线性特性有潜力提取出更高阶的非线性极化率项。然而,到目前为止,由于高次谐波与非线性极化率之间缺乏直接对应关系,这种表征一直难以实现。在此,我们展示了一种能明确建立这种对应关系的情况,从蓝宝石中提取出与测量的高次谐波同阶的非线性极化率(第七阶、第九阶和第十一阶)。提取出的高阶极化率显示出因能带结构随晶体取向变化而产生的角分辨周期性。我们的结果为受激光偏振控制的多通道信号处理打开了一扇门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83e4/6646338/3e271954f157/41467_2019_11096_Fig1_HTML.jpg

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