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利用近红外光栅脉冲和极紫外衍射探针的阿秒瞬态光栅光谱学

Attosecond Transient Grating Spectroscopy with Near-Infrared Grating Pulses and an Extreme Ultraviolet Diffracted Probe.

作者信息

Quintero-Bermudez Rafael, Drescher Lauren, Eggers Vincent, Xiong Kevin Gulu, Leone Stephen R

机构信息

Department of Chemistry, University of California, Berkeley, California 94720, United States.

Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

ACS Photonics. 2025 Mar 12;12(4):2097-2105. doi: 10.1021/acsphotonics.4c02545. eCollection 2025 Apr 16.

Abstract

Transient grating spectroscopy has become a mainstay among metal and semiconductor characterization techniques. Here, we extend the technique toward the shortest achievable time scales by using tabletop high-harmonic generation of attosecond extreme ultraviolet (XUV) pulses that diffract from transient gratings generated with sub-5 fs near-infrared (NIR) pulses. We demonstrate the power of attosecond transient grating spectroscopy (ATGS) by investigating the ultrafast photoexcited dynamics in an Sb semimetal thin film. ATGS provides an element-specific, background-free signal unfettered by spectral congestion, in contrast to transient absorption spectroscopy. With ATGS measurements in Sb polycrystalline thin films, we observe the generation of coherent phonons and investigate the lattice and carrier dynamics. Among the latter processes, we extract carrier thermalization, hot carrier cooling, and electron-hole recombination, which are on the order of 20 fs, 50 fs, and 2 ps time scales, respectively. Furthermore, the simultaneous collection of transient absorption and transient grating data allows us to extract the total complex dielectric constant in the sample dynamics with a single measurement, including the real-valued refractive index, from which we are also able to investigate carrier-phonon interactions and longer-lived phonon dynamics. The outlined experimental technique expands the capabilities of transient grating spectroscopy and attosecond spectroscopies by providing a wealth of information concerning carrier and lattice dynamics with an element-selective technique at the shortest achievable time scales.

摘要

瞬态光栅光谱已成为金属和半导体表征技术的主流方法。在此,我们通过使用桌面型高谐波产生阿秒极紫外(XUV)脉冲来扩展该技术,使其能够达到最短的时间尺度,这些阿秒极紫外脉冲会从由亚5飞秒近红外(NIR)脉冲产生的瞬态光栅上发生衍射。我们通过研究锑半金属薄膜中的超快光激发动力学,展示了阿秒瞬态光栅光谱(ATGS)的强大功能。与瞬态吸收光谱不同,ATGS提供了一种元素特异性、无背景的信号,不受光谱拥堵的影响。通过对锑多晶薄膜进行ATGS测量,我们观察到了相干声子的产生,并研究了晶格和载流子动力学。在后者的过程中,我们分别提取了载流子热化、热载流子冷却和电子 - 空穴复合过程,其时间尺度分别约为20飞秒、50飞秒和2皮秒。此外,同时收集瞬态吸收和瞬态光栅数据使我们能够通过单次测量提取样品动力学中的总复介电常数,包括实值折射率,从中我们还能够研究载流子 - 声子相互作用和寿命更长的声子动力学。所概述的实验技术通过在最短可实现的时间尺度上使用元素选择性技术提供了大量关于载流子和晶格动力学的信息,从而扩展了瞬态光栅光谱和阿秒光谱的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6617/12007106/ab1e6d7909c7/ph4c02545_0001.jpg

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