Post-fabrication tuning of circular Bragg resonators for enhanced emitter-cavity coupling

Fuente: arXiv
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Main Authors: Krieger, Tobias M., Weidinger, Christian, Oberleitner, Thomas, Undeutsch, Gabriel, Rota, Michele B., Tajik, Naser, Aigner, Maximilian, Buchinger, Quirin, Schimpf, Christian, Garcia Jr., Ailton J., da Silva, Saimon F. Covre, Höfling, Sven, Huber-Loyola, Tobias, Trotta, Rinaldo, Rastelli, Armando
Format: Preprint
Published: 2023
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author Krieger, Tobias M.
Weidinger, Christian
Oberleitner, Thomas
Undeutsch, Gabriel
Rota, Michele B.
Tajik, Naser
Aigner, Maximilian
Buchinger, Quirin
Schimpf, Christian
Garcia Jr., Ailton J.
da Silva, Saimon F. Covre
Höfling, Sven
Huber-Loyola, Tobias
Trotta, Rinaldo
Rastelli, Armando
author_facet Krieger, Tobias M.
Weidinger, Christian
Oberleitner, Thomas
Undeutsch, Gabriel
Rota, Michele B.
Tajik, Naser
Aigner, Maximilian
Buchinger, Quirin
Schimpf, Christian
Garcia Jr., Ailton J.
da Silva, Saimon F. Covre
Höfling, Sven
Huber-Loyola, Tobias
Trotta, Rinaldo
Rastelli, Armando
contents Solid-state quantum emitters embedded in circular Bragg resonators are attractive due to their ability to emit quantum states of light with high brightness and low multi-photon probability. As for any emitter-microcavity system, fabrication imperfections limit the spatial and spectral overlap of the emitter with the cavity mode, thus limiting their coupling strength. Here, we show that an initial spectral mismatch can be corrected after device fabrication by repeated wet chemical etching steps. We demonstrate ~16 nm wavelength tuning for optical modes in AlGaAs resonators on oxide, leading to a 4-fold Purcell enhancement of the emission of single embedded GaAs quantum dots. Numerical calculations reproduce the observations and suggest that the achievable performance of the resonator is only marginally affected in the explored tuning range. We expect the method to be applicable also to circular Bragg resonators based on other material platforms, thus increasing the device yield of cavity-enhanced solid-state quantum emitters.
format Preprint
id arxiv_https___arxiv_org_abs_2309_15801
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Post-fabrication tuning of circular Bragg resonators for enhanced emitter-cavity coupling
Krieger, Tobias M.
Weidinger, Christian
Oberleitner, Thomas
Undeutsch, Gabriel
Rota, Michele B.
Tajik, Naser
Aigner, Maximilian
Buchinger, Quirin
Schimpf, Christian
Garcia Jr., Ailton J.
da Silva, Saimon F. Covre
Höfling, Sven
Huber-Loyola, Tobias
Trotta, Rinaldo
Rastelli, Armando
Quantum Physics
Optics
Solid-state quantum emitters embedded in circular Bragg resonators are attractive due to their ability to emit quantum states of light with high brightness and low multi-photon probability. As for any emitter-microcavity system, fabrication imperfections limit the spatial and spectral overlap of the emitter with the cavity mode, thus limiting their coupling strength. Here, we show that an initial spectral mismatch can be corrected after device fabrication by repeated wet chemical etching steps. We demonstrate ~16 nm wavelength tuning for optical modes in AlGaAs resonators on oxide, leading to a 4-fold Purcell enhancement of the emission of single embedded GaAs quantum dots. Numerical calculations reproduce the observations and suggest that the achievable performance of the resonator is only marginally affected in the explored tuning range. We expect the method to be applicable also to circular Bragg resonators based on other material platforms, thus increasing the device yield of cavity-enhanced solid-state quantum emitters.
title Post-fabrication tuning of circular Bragg resonators for enhanced emitter-cavity coupling
topic Quantum Physics
Optics
url https://arxiv.org/abs/2309.15801