Lineshapes in Pump-Probe Spectroscopy of Polaritons

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Philipp, Luca Nils, Münzel, Eva, Lüttig, Julian, Mitrić, Roland
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866916751640363008
author Philipp, Luca Nils
Münzel, Eva
Lüttig, Julian
Mitrić, Roland
author_facet Philipp, Luca Nils
Münzel, Eva
Lüttig, Julian
Mitrić, Roland
contents Forming new hybrid quasiparticles by strong light-matter coupling is a promising tool for tailoring photophysics and photochemistry of molecules. Thus, the ultrafast dynamics of polaritons formed upon strong light-matter coupling has been extensively studied by pump-probe spectroscopy. Although it was predicted that the partial photonic character of polaritons should shorten their lifetime compared to purely molecular excited states, many studies do not observe this effect. So far, the unexpected longevity of the spectral signatures was either explained by relaxation into a manifold of so-called dark states or by other uncontrolled effects that change the properties of cavity materials. In order to resolve these issues, we investigate here the dependence of the lineshape of pump-probe spectra of polaritons on the ratio of photonic and molecular character. Furthermore, by phenomenologically including relaxation to dark states, we find that it is possible to spectrally resolve this relaxation process by observing a characteristic phase flip in the pump-probe signal. Our results show that the signatures of various effects and their contributions to the polariton dynamics can be disentangled from the spectral lineshapes.
format Preprint
id arxiv_https___arxiv_org_abs_2505_16427
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Lineshapes in Pump-Probe Spectroscopy of Polaritons
Philipp, Luca Nils
Münzel, Eva
Lüttig, Julian
Mitrić, Roland
Chemical Physics
Forming new hybrid quasiparticles by strong light-matter coupling is a promising tool for tailoring photophysics and photochemistry of molecules. Thus, the ultrafast dynamics of polaritons formed upon strong light-matter coupling has been extensively studied by pump-probe spectroscopy. Although it was predicted that the partial photonic character of polaritons should shorten their lifetime compared to purely molecular excited states, many studies do not observe this effect. So far, the unexpected longevity of the spectral signatures was either explained by relaxation into a manifold of so-called dark states or by other uncontrolled effects that change the properties of cavity materials. In order to resolve these issues, we investigate here the dependence of the lineshape of pump-probe spectra of polaritons on the ratio of photonic and molecular character. Furthermore, by phenomenologically including relaxation to dark states, we find that it is possible to spectrally resolve this relaxation process by observing a characteristic phase flip in the pump-probe signal. Our results show that the signatures of various effects and their contributions to the polariton dynamics can be disentangled from the spectral lineshapes.
title Lineshapes in Pump-Probe Spectroscopy of Polaritons
topic Chemical Physics
url https://arxiv.org/abs/2505.16427