Continuous-Wave Nonlinear Polarization Control and Signatures of Criticality in a Perovskite Cavity

Fuente: arXiv
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Main Authors: Keijsers, G., de Boer, R. M., Verdonschot, B., Peters, K. J. H., Geng, Z., Rodriguez, S. R. K.
Format: Preprint
Published: 2024
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_version_ 1866913421046317056
author Keijsers, G.
de Boer, R. M.
Verdonschot, B.
Peters, K. J. H.
Geng, Z.
Rodriguez, S. R. K.
author_facet Keijsers, G.
de Boer, R. M.
Verdonschot, B.
Peters, K. J. H.
Geng, Z.
Rodriguez, S. R. K.
contents Halide perovskites have emerged as promising photonic materials for fundamental physics studies and technological applications. Their potential for nonlinear optics has also drawn great interest recently; yet, to date, continuous-wave (CW) nonlinearities have remained elusive. Here we demonstrate CW nonlinear phenomena in a CsPbBr$_3$ perovskite cavity. We first demonstrate optical bistability -- the hallmark of single-mode coherent nonlinear optics. Next we exploit the interplay of nonlinearity and birefringence to demonstrate nonlinear control over the polarization of light. Finally, by measuring the optical hysteresis of our cavity as a function of temperature, we find a dramatic enhancement of the nonlinearity around 65 K. This enhancement is indicative of a phase transition in CsPbBr$_3$. Our results position CsPbBr$_3$ cavities as an exceptional platform for nonlinear optics, offering strong CW nonlinearity and birefringence which are furthermore tunable. In addition, our approach to uncover a phase transition of matter via optical hysteresis measurements is promising for exploring strongly correlated states of light-matter systems.
format Preprint
id arxiv_https___arxiv_org_abs_2407_05856
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Continuous-Wave Nonlinear Polarization Control and Signatures of Criticality in a Perovskite Cavity
Keijsers, G.
de Boer, R. M.
Verdonschot, B.
Peters, K. J. H.
Geng, Z.
Rodriguez, S. R. K.
Optics
Mesoscale and Nanoscale Physics
Materials Science
Other Condensed Matter
Quantum Physics
Halide perovskites have emerged as promising photonic materials for fundamental physics studies and technological applications. Their potential for nonlinear optics has also drawn great interest recently; yet, to date, continuous-wave (CW) nonlinearities have remained elusive. Here we demonstrate CW nonlinear phenomena in a CsPbBr$_3$ perovskite cavity. We first demonstrate optical bistability -- the hallmark of single-mode coherent nonlinear optics. Next we exploit the interplay of nonlinearity and birefringence to demonstrate nonlinear control over the polarization of light. Finally, by measuring the optical hysteresis of our cavity as a function of temperature, we find a dramatic enhancement of the nonlinearity around 65 K. This enhancement is indicative of a phase transition in CsPbBr$_3$. Our results position CsPbBr$_3$ cavities as an exceptional platform for nonlinear optics, offering strong CW nonlinearity and birefringence which are furthermore tunable. In addition, our approach to uncover a phase transition of matter via optical hysteresis measurements is promising for exploring strongly correlated states of light-matter systems.
title Continuous-Wave Nonlinear Polarization Control and Signatures of Criticality in a Perovskite Cavity
topic Optics
Mesoscale and Nanoscale Physics
Materials Science
Other Condensed Matter
Quantum Physics
url https://arxiv.org/abs/2407.05856