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Effects of high pulse intensity and chirp in two-dimensional electronic spectroscopy of an atomic vapor

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arxiv 2004.13366 v3 pith:NWC7HZWV submitted 2020-04-28 physics.optics physics.atom-ph

classification physics.opticsphysics.atom-ph
keywords effectshigher-orderintensitysystematomicchirpelectronichigh
verification ladder T0 review T1 audit T2 compute T3 formal
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The effects of high pulse intensity and chirp on two-dimensional electronic spectroscopy signals are experimentally investigated in the highly non-perturbative regime using atomic rubidium vapor as clean model system. Data analysis is performed based on higher-order Feynman diagrams and non-perturbative numerical simulations of the system response. It is shown that higher-order contributions may lead to a fundamental change of the static appearance and beating-maps of the 2D spectra and that chirped pulses enhance or suppress distinct higher-order pathways. We further give an estimate of the threshold intensity beyond which the high-intensity effects become visible for the system under consideration.

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