Exciton Fine Structure in 2D Perovskites: The Out‐of‐Plane Excitonic State

Author:

Posmyk Katarzyna12ORCID,Dyksik Mateusz1ORCID,Surrente Alessandro1ORCID,Maude Duncan K.2,Zawadzka Natalia3,Babiński Adam3ORCID,Molas Maciej R.3ORCID,Paritmongkol Watcharaphol45ORCID,Mączka Mirosław6ORCID,Tisdale William A.4ORCID,Plochocka Paulina12ORCID,Baranowski Michał1ORCID

Affiliation:

1. Department of Experimental Physics Faculty of Fundamental Problems of Technology Wroclaw University of Science and Technology Wroclaw 50‐370 Poland

2. Laboratoire National des Champs Magnétiques Intenses, UPR 3228 CNRS‐UGA‐UPS‐INSA Grenoble and Toulouse 38042 France

3. Institute of Experimental Physics, Faculty of Physics University of Warsaw Warsaw 02‐093 Poland

4. Department of Chemical Engineering Massachusetts Institute of Technology Cambridge Massachusetts 02139 United States

5. Department of Chemistry Massachusetts Institute of Technology Cambridge Massachusetts 02139 United States

6. Institute of Low Temperature and Structure Research Polish Academy of Sciences ul. Okólna 2 Wrocław 50‐422 Poland

Abstract

Abstract2D Ruddlesden‐Popper metal‐halide perovskites feature particularly strong excitonic effects, making them a fascinating playground for studying exciton physics. A complete understanding of the properties of this quasi‐particle is crucial to fully exploit the tremendous potential of 2D perovskites (2DP) in light emission applications. Despite intense investigations, some of the exciton properties remain elusive to date, for example, the energy‐ordering of the exciton states within the so‐called fine structure manifold. Using optical spectroscopy, it demonstrates that in the archetypical 2DP (PEA)2PbI4, in contradiction to theoretical predictions, the energy of the bright out‐of‐plane exciton state is higher than that of two in‐plane states. Having elucidated the order of exciton fine structure, it determines the g‐factor of the dark exciton transition, together with the values of the electron and hole g‐factors in the direction parallel to the c‐axis of the crystal. In this way, it provides for the first time, a complete picture of the exciton fine structure in (PEA)2PbI4 2DP.

Funder

Narodowe Centrum Nauki

Agence Nationale de la Recherche

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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