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20192026
most citedNumerical Method for Nonlinear Optical Spectroscopies: Ultrafast Ultrafast Spectroscopy

12 citations · 12 across the 4 of their papers we have counts for

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physics.chem-ph2026

Nonlinear order separation in two-dimensional electronic spectroscopy quantifies properties of higher-excited states

Katja Mayershofer, Peter A. Rose, Julian Lüttig +4

Two-dimensional (2D) spectroscopy combines high temporal and spectral resolution, allowing the observation of ultrafast energy transfer and the separation of homogeneous and inhomo…

physics.chem-ph2025

Separating orders of response in transient absorption and coherent multi-dimensional spectroscopy by intensity variation

Jacob J. Krich, Luisa Brenneis, Peter A. Rose +5

Interpretation of time-resolved spectroscopies such as transient absorption (TA) or two-dimensional (2D) spectroscopy often relies on the perturbative description of light-matter i…

physics.chem-ph2023

Interpretations of High-Order Transient Absorption Spectroscopies

Peter A. Rose, Jacob J. Krich

Transient absorption (TA) spectroscopy has long been an invaluable tool for determining the energetics and dynamics of excited states in atomic, molecular, and solid-state systems.…

physics.chem-ph2020

Efficient numerical method for predicting nonlinear optical spectroscopies of open systems

Peter A. Rose, Jacob J. Krich

Nonlinear optical spectroscopies are powerful tools for probing quantum dynamics in molecular and nanoscale systems. While intuition about ultrafast spectroscopies is often built b…

physics.chem-ph2020

Automatic Feynman diagram generation for nonlinear optical spectroscopies

Peter A. Rose, Jacob J. Krich

Perturbative nonlinear optical spectroscopies are powerful methods to understand the dynamics of excitonic and other condensed phase systems. Feynman diagrams have long provided th…

physics.chem-ph201912 cited

Numerical Method for Nonlinear Optical Spectroscopies: Ultrafast Ultrafast Spectroscopy

Peter A. Rose, Jacob J. Krich

We outline a novel numerical method, called Ultrafast Ultrafast (UF), for calculating the -order wavepackets required for calculating n-wave mixing signals. The me…