The James Franck Institute and Department of Chemistry, University of Chicago, Chicago, Illinois 60637, USA.
Opt Lett. 2011 May 1;36(9):1665-7. doi: 10.1364/OL.36.001665.
Here we present two-dimensional (2D) electronic spectra of the light-harvesting complex LH2 from purple bacteria using coherent pulses with bandwidth of over 100 nm FWHM. This broadband excitation and detection has allowed the simultaneous capture of both the B800 and B850 bands using a single light source. We demonstrate that one laser pulse is sufficient to capture the entire 2D electronic spectrum with a high signal-to-noise ratio. At a waiting time of 800 fs, we observe population transfer from the B800 to B850 band as manifested by a prominent cross peak. These results will enable observation of the dynamics of biological systems across both ultrafast (<1 ps) and slower (>1 ms) timescales simultaneously.
在这里,我们使用带宽超过 100nm FWHM 的相干脉冲呈现来自紫色细菌的光捕获复合物 LH2 的二维(2D)电子光谱。这种宽带激发和探测允许使用单个光源同时捕获 B800 和 B850 带。我们证明,一个激光脉冲足以以高信噪比捕获整个 2D 电子光谱。在等待时间为 800fs 时,我们观察到从 B800 到 B850 带的种群转移,这表现为明显的交叉峰。这些结果将使我们能够同时观察超快(<1ps)和较慢(>1ms)时间尺度的生物系统动力学。