Coherent acoustic phonon transport in optophononic waveguides

C. Xiang, E. R. Cardozo de Oliveira, S. Sathyan, O. Ortiz, L. Le Gratiet, K. Papatryfonos, I. Sagnes, M. Morassi, A. Lemaître, M. Esmann, N. D. Lanzillotti-Kimura

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Resumen

To achieve full control over acoustic phonons at ultrahigh frequencies, it is essential to characterize the phonon transport properties. Recent works have shown that surface acoustic waves at gigahertz frequencies can propagate over micrometer distances in different nanostructures such as nanowires, nanogratings, and nanoantennas. Here, we aim at investigating acoustic phonon transport by designing a GaAs/AlAs optophononic waveguide. Along the vertical direction of the waveguide, a Fabry-Perot cavity ensures an efficient confinement of acoustic phonons that has been demonstrated in planar and micropillar structures. In the lateral direction, the interface of air and semiconductor serves as an acoustic mirror to reflect phonons in the waveguide. We perform pump-probe experiments to generate coherent acoustic phonons at one position and detect them remotely on the waveguide. We analyze the signals originated by phonons generated in the pump position reaching the remote probe location, revealing a clear indication of phonon transport at room temperature. Our findings have potential applications in quantum technologies and data processing.

Idioma originalInglés
Título de la publicación alojadaNanophotonics X
EditoresDavid L. Andrews, Angus J. Bain, Antonio Ambrosio
EditorialSPIE
ISBN (versión digital)9781510673007
DOI
EstadoPublicada - 2024
Publicado de forma externa
EventoNanophotonics X 2024 - Strasbourg, Francia
Duración: 7 abr. 202412 abr. 2024

Serie de la publicación

NombreProceedings of SPIE - The International Society for Optical Engineering
Volumen12991
ISSN (versión impresa)0277-786X
ISSN (versión digital)1996-756X

Conferencia

ConferenciaNanophotonics X 2024
País/TerritorioFrancia
CiudadStrasbourg
Período7/04/2412/04/24

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