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Ultrafast Hyperspectral Transient Absorption Spectroscopy: Application to Single Layer Graphene

机译:超快速高光谱瞬态吸收光谱:在单层石墨烯中的应用

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We describe the basic principles and the experimental implementation of the hyperspectral transient absorption technique, based on femtosecond laser sources. In this technique the samples were optically “pumped” using the femtosecond tunable pulse delivered by an Optical Parametric Amplifier, and “probed” for changes in transmission in a broad spectral range with a “white light” laser-generated supercontinuum. The spectra were collected by a pair of multichannel detectors which allowed retrieval of the absorbance change in a wide spectral range in one time. The use of the supercontinuum probe introduced artifacts in the measured 2D data set which could be corrected with a proper calibration of the chirp. The configuration with crossed polarization for pump and probe pulse extended the spectral measured range above and below the pump energy within the same experiment. We showed the versatility of the technique by applying it to the investigation of the charge carrier dynamics in two-dimensional single layer graphene.
机译:我们描述了基于飞秒激光源的高光谱瞬态吸收技术的基本原理和实验实现。在这项技术中,使用光学参量放大器发出的飞秒可调脉冲对样品进行光学“泵浦”,并通过“白光”激光产生的超连续谱“探测”宽光谱范围内的透射率变化。光谱是由一对多通道检测器收集的,这些检测器可以一次检索宽光谱范围内的吸光度变化。超连续谱探针的使用在测量的2D数据集中引入了伪影,可以通过the的适当校准对其进行校正。在同一实验中,用于泵浦和探针脉冲的交叉极化的配置扩展了泵浦能量之上和之下的光谱测量范围。通过将其应用于二维单层石墨烯中载流子动力学的研究,我们展示了该技术的多功能性。

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