The James Franck Institute, Institute for Biophysical Dynamics, and Department of Chemistry, The University of Chicago, Chicago, Illinois 60637, USA.
J Chem Phys. 2013 Aug 28;139(8):084201. doi: 10.1063/1.4818808.
Assigning absolute phase to two-dimensional (2D) third-order nonlinear optical signals generally requires acquiring both the rephasing and the non-rephasing signals and comparing the sum of the two to spectrally resolved pump-probe spectra. To date, however, Gradient Assisted Photon Echo Spectroscopy (GRAPES) has only been able to acquire rephasing spectra. Such a constraint requires a new phasing protocol. Here, we analytically prove that the rephasing and non-rephasing spectra can be phased independently using pump-probe signal. We verify this result holds even for finite duration pulses by simulation. This relationship holds for all 2D spectroscopies, not only GRAPES. In addition, we present improvements to GRAPES that enable acquisition of rephasing and non-rephasing signals in different phase-matched directions. We employ our phasing protocol to phase the data for laser dye IR-144, leading to reconstruction of purely absorptive 2D spectrum.
将二维(2D)三阶非线性光学信号的绝对相位分配通常需要同时获取相消和非相消信号,并将两者的和与光谱分辨的泵浦-探测光谱进行比较。然而,到目前为止,梯度辅助光子回波光谱学(GRAPES)只能获取相消光谱。这种限制需要新的定相协议。在这里,我们通过分析证明,使用泵浦-探测信号可以独立地对相消和非相消光谱进行定相。我们通过模拟验证了即使对于有限持续时间的脉冲,该结果仍然成立。该关系适用于所有 2D 光谱学,而不仅仅是 GRAPES。此外,我们还提出了对 GRAPES 的改进,使其能够在不同的相匹配方向上获取相消和非相消信号。我们采用我们的定相协议对激光染料 IR-144 的数据进行定相,从而重建纯吸收的 2D 光谱。