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首页> 外文期刊>Annual Review of Physical Chemistry >Experimental Implementations of Two-Dimensional Fourier Transform Electronic Spectroscopy
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Experimental Implementations of Two-Dimensional Fourier Transform Electronic Spectroscopy

机译:二维傅立叶变换电子光谱的实验实现

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摘要

Two-dimensional electronic spectroscopy (2DES) reveals connections between an optical excitation at a given frequency and the signals it creates over a wide range of frequencies. These connections, manifested as cross-peak locations and their lineshapes, reflect the underlying electronic and vibrational structure of the system under study. How these spectroscopic signatures evolve in time reveals the system dynamics and provides a detailed picture of coherent and incoherent processes. 2DES is rapidly maturing and has already found numerous applications, including studies of photosynthetic energy transfer and photochemical reactions and many-body interactions in nanostructured materials. Many systems of interest contain electronic transitions spanning the ultraviolet to the near infrared and beyond. Most 2DES measurements to date have explored a relatively small frequency range. We discuss the challenges of implementing 2DES and compare and contrast different approaches in terms of their information content, ease of implementation, and potential for broadband measurements.
机译:二维电子光谱(2DES)揭示了给定频率下的光激发与其在很宽的频率范围内产生的信号之间的联系。这些连接表现为跨峰位置及其线形,反映了所研究系统的潜在电子和振动结构。这些光谱特征如何随时间演变揭示了系统动态,并提供了相干和不相干过程的详细信息。 2DES迅速成熟,已经发现了许多应用,包括对光合能量转移和光化学反应以及纳米结构材料中多体相互作用的研究。许多感兴趣的系统都包含从紫外到近红外以及更远范围的电子跃迁。迄今为止,大多数2DES测量都探索了相对较小的频率范围。我们讨论了实施2DES所面临的挑战,并就它们的信息内容,易于实施以及宽带测量的潜力进行了比较和对比。

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