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Updated: May 15, 2025

Generation and Coherent Control of Pulsed Quantum Frequency Combs
Published on: June 8, 2018
Non-Hermitian Hamiltonian Approach for Two-Dimensional Coherent Spectra of Driven Systems
Hao-Yue Zhang1,2, Yi-Xuan Yao1,2, Bin-Yao Huang1,2,3
1School of Physics and Astronomy, Applied Optics Beijing Area Major Laboratory, Beijing Normal University, Beijing 100875, China.
Abstract:
Two-dimensional coherent spectroscopy (2DCS) offers significant advantages in terms of high temporal and frequency resolutions and a signal-to-noise ratio. Until now, the response-function (RF) formalism has been the prevalent theoretical description. In this study, we compare the non-Hermitian Hamiltonian (NHH) method with the RF formalism in a three-level system with a constant control field. We obtain the signals from both approaches and compare their population dynamics and 2DCS. We propose quasi-Green functions for the NHH method, which allows all dominant Liouville paths to be inferred. We further simulated the 2DCS of Rh(CO)2C5H7O2 (RDC) dissolved in hexane with the NHH method, which is in good agreement with the previous experiments. Although the NHH method overestimates relaxations, it provides all important paths by analytical solutions, which are different from the four paths used in the RF formalism. Our results demonstrate that the NHH method is more suitable than the RF formalism for investigating the systems, including relaxation and control fields via the 2DCS.
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