Tuning photoacoustics with nanotransducers via thermal boundary resistance and laser pulse duration

Author:

Diego Michele1ORCID,Gandolfi Marco234ORCID,Giordano Stefano5ORCID,Vialla Fabien1ORCID,Crut Aurélien1ORCID,Vallée Fabrice1,Maioli Paolo1ORCID,Del Fatti Natalia16ORCID,Banfi Francesco1ORCID

Affiliation:

1. FemtoNanoOptics Group, Université de Lyon, CNRS, Université Claude Bernard Lyon 1, Institut Lumière Matière, F-69622 Villeurbanne, France

2. CNR-INO, via Branze 45, 25123 Brescia, Italy

3. Department of Information Engineering, Università di Brescia, via Branze 38, 25123 Brescia, Italy

4. Interdisciplinary Laboratories for Advanced Materials Physics (I-LAMP) and Dipartimento di Matematica e Fisica, Università Cattolica del Sacro Cuore, via della Garzetta 48, Brescia I-25133, Italy

5. Université de Lille, CNRS, Centrale Lille, Université Polytechnique Hauts-de-France, UMR 8520–IEMN–Institut d'Électronique de Microélectronique et de Nanotechnologie, F-59000 Lille, France

6. Institut Universitaire de France (IUF), F-75005 Paris, France

Abstract

The photoacoustic effect in liquids, generated by metal nanoparticles excited with short laser pulses, offers high contrast imaging and promising medical treatment techniques. Understanding the role of the thermal boundary resistance (TBR) and the laser pulse duration in the generation mechanism of acoustic waves is essential to implement efficient photoacoustic nanotransducers. This work theoretically investigates, for the paradigmatic case of water-immersed gold nanocylinders, the role of the TBR and laser pulse duration in the competition between the launching mechanisms: the thermophone and the mechanophone. In the thermophone, the nanoparticle acts as a nanoheater and the wave is launched by water thermal expansion. In the mechanophone, the nanoparticle directly acts as a nanopiston. Specifically, for a gold–water interface, the thermophone prevails under ns light pulse irradiation, while the mechanophone dominates shortening the pulse to the 10 ps regime. For a graphene-functionalized gold–water interface, instead, the mechanophone dominates over the entire range of explored laser pulse durations. The results point to high-TBR, liquid-immersed nanoparticles as potentially efficient photoacoustic nanogenerators, with the advantage of keeping the liquid environment temperature unaltered.

Funder

LABEX iMUST

Agence Nationale de la Recherche

Centre National de la Recherche Scientifique

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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