Guided polariton condensate in perovskite microwires

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Nytko, Maciej, Kędziora, Mateusz, Zaremba, Maciej, Ekielski, Marek, Szerling, Anna, Tyszka, Krzysztof, Piętka, Barbara
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909621156839424
author Nytko, Maciej
Kędziora, Mateusz
Zaremba, Maciej
Ekielski, Marek
Szerling, Anna
Tyszka, Krzysztof
Piętka, Barbara
author_facet Nytko, Maciej
Kędziora, Mateusz
Zaremba, Maciej
Ekielski, Marek
Szerling, Anna
Tyszka, Krzysztof
Piętka, Barbara
contents Perovskite microwires are promising candidates for integrated photonic systems due to their strong nonlinear optical response and inherent waveguiding capabilities. In this study, we focus on the directional emission properties of exciton-polariton condensates formed within perovskite microwires, with emphasis on emission collected from the microwire end. We constructed a multi-angle optical detection setup that allows us to identify the exciton-polariton condensation threshold and track the evolution of the condensate for different excitation position along and across the microwire. We observe spectrally narrow exciton-polariton condensate emission from the microwire end even when the condensate is generated tens of micrometers away, which demonstrates the ability of the exciton-polariton condensate to propagate over long distances within the microwire. Furthermore, we find that the presence of structural defects near the condensate location can significantly enhance the emission from the microwire end due to aligning the condensate's momentum with the waveguide direction, thereby facilitating more efficient propagation.
format Preprint
id arxiv_https___arxiv_org_abs_2505_17728
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Guided polariton condensate in perovskite microwires
Nytko, Maciej
Kędziora, Mateusz
Zaremba, Maciej
Ekielski, Marek
Szerling, Anna
Tyszka, Krzysztof
Piętka, Barbara
Optics
Materials Science
Perovskite microwires are promising candidates for integrated photonic systems due to their strong nonlinear optical response and inherent waveguiding capabilities. In this study, we focus on the directional emission properties of exciton-polariton condensates formed within perovskite microwires, with emphasis on emission collected from the microwire end. We constructed a multi-angle optical detection setup that allows us to identify the exciton-polariton condensation threshold and track the evolution of the condensate for different excitation position along and across the microwire. We observe spectrally narrow exciton-polariton condensate emission from the microwire end even when the condensate is generated tens of micrometers away, which demonstrates the ability of the exciton-polariton condensate to propagate over long distances within the microwire. Furthermore, we find that the presence of structural defects near the condensate location can significantly enhance the emission from the microwire end due to aligning the condensate's momentum with the waveguide direction, thereby facilitating more efficient propagation.
title Guided polariton condensate in perovskite microwires
topic Optics
Materials Science
url https://arxiv.org/abs/2505.17728