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Next-Generation Ultrafast Photoluminescence Spectroscopy: Integration of Transient Grating Optical Gate and Advanced Femtosecond Laser Technology
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Next-Generation Ultrafast Photoluminescence Spectroscopy: Integration of Transient Grating Optical Gate and Advanced Femtosecond Laser Technology

Chao-Yang Lin, Zi-Cheng Jiang, Bo-Han Chen, Isabella Wagner, Loïc Lavenu, Yoann Zaouter, Lin-Song Cui, Chih-Hsuang Lu, Marc Hanna, Justin M. Hodgkiss, …
The journal of physical chemistry letters, 卷.16(4), 頁碼.1081-1087
30/01/2025
PMID: 39846282
Web of Science ID: WOS:001405322000001

摘要

Physical Insights into Light Interacting with Matter
We demonstrate a high-performance ultrafast broadband time-resolved photoluminescence (TRPL) system based on the transient grating photoluminescence spectroscopy (TGPLS) technique. The core of the system is a Kerr effect-induced transient grating (TG) optical gate driven by high repetition rate ultrashort laser pulses at 1030 nm with micro-Joule pulse energy. Satisfying the demands of spectroscopy applications, the setup achieves high sensitivity, rapid data acquisition, ultrafast time resolution, and a wide spectral window from ultraviolet to near-infrared. The time resolution can be further improved to achieve <80 fs instrument response function by employing the multiple plate compression (MPC) technique to temporally compress the driving pulses. This work presents a new benchmark for ultrafast TRPL.

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