Integrated, ultrafast all-optical polariton transistors with sub-wavelength grating microcavities

Fuente: arXiv
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Auteurs principaux: Tassan, Pietro, Urbonas, Darius, Chmielak, Bartos, Bolten, Jens, Wahlbrink, Thorsten, Lemme, Max C., Forster, Michael, Scherf, Ullrich, Mahrt, Rainer F., Stöferle, Thilo
Format: Preprint
Publié: 2024
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author Tassan, Pietro
Urbonas, Darius
Chmielak, Bartos
Bolten, Jens
Wahlbrink, Thorsten
Lemme, Max C.
Forster, Michael
Scherf, Ullrich
Mahrt, Rainer F.
Stöferle, Thilo
author_facet Tassan, Pietro
Urbonas, Darius
Chmielak, Bartos
Bolten, Jens
Wahlbrink, Thorsten
Lemme, Max C.
Forster, Michael
Scherf, Ullrich
Mahrt, Rainer F.
Stöferle, Thilo
contents All-optical logic has the potential to overcome the operation speed barrier that has persisted in electronic circuits for two decades. However, the development of scalable architectures has been prevented so far by the lack of materials with sufficiently strong nonlinear interactions needed to realize compact and efficient ultrafast all-optical switches with optical gain. Microcavities with embedded organic material in the strong light-matter interaction regime have recently enabled all-optical transistors operating at room temperature with picosecond switching times. However, the vertical cavity geometry, which is predominantly used in polaritonics, is not suitable for complex circuits with on-chip coupled transistors. Here, by leveraging state-of-the-art silicon photonics technology, we have achieved exciton-polariton condensation at ambient conditions in fully integrated high-index contrast sub-wavelength grating microcavities filled with a pi-conjugated polymer as optically active material. We demonstrate ultrafast all-optical transistor action by coupling two resonators and utilizing seeded polariton condensation. With a device area as small as 2x2 um^2, we realize picosecond switching and amplification up to 60x, with extinction ratio up to 8:1. This compact ultrafast transistor device with in-plane integration is a key component for a scalable platform for all-optical logic circuits that could operate two orders of magnitude faster than electronic ones.
format Preprint
id arxiv_https___arxiv_org_abs_2404_01868
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Integrated, ultrafast all-optical polariton transistors with sub-wavelength grating microcavities
Tassan, Pietro
Urbonas, Darius
Chmielak, Bartos
Bolten, Jens
Wahlbrink, Thorsten
Lemme, Max C.
Forster, Michael
Scherf, Ullrich
Mahrt, Rainer F.
Stöferle, Thilo
Optics
Other Condensed Matter
All-optical logic has the potential to overcome the operation speed barrier that has persisted in electronic circuits for two decades. However, the development of scalable architectures has been prevented so far by the lack of materials with sufficiently strong nonlinear interactions needed to realize compact and efficient ultrafast all-optical switches with optical gain. Microcavities with embedded organic material in the strong light-matter interaction regime have recently enabled all-optical transistors operating at room temperature with picosecond switching times. However, the vertical cavity geometry, which is predominantly used in polaritonics, is not suitable for complex circuits with on-chip coupled transistors. Here, by leveraging state-of-the-art silicon photonics technology, we have achieved exciton-polariton condensation at ambient conditions in fully integrated high-index contrast sub-wavelength grating microcavities filled with a pi-conjugated polymer as optically active material. We demonstrate ultrafast all-optical transistor action by coupling two resonators and utilizing seeded polariton condensation. With a device area as small as 2x2 um^2, we realize picosecond switching and amplification up to 60x, with extinction ratio up to 8:1. This compact ultrafast transistor device with in-plane integration is a key component for a scalable platform for all-optical logic circuits that could operate two orders of magnitude faster than electronic ones.
title Integrated, ultrafast all-optical polariton transistors with sub-wavelength grating microcavities
topic Optics
Other Condensed Matter
url https://arxiv.org/abs/2404.01868