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The 2019 surface acoustic waves roadmap

Published version
Peer-reviewed

Type

Article

Change log

Authors

Delsing, P 
Cleland, AN 
Schuetz, MJA 

Abstract

jats:titleAbstract</jats:title> jats:pToday, surface acoustic waves (SAWs) and bulk acoustic waves are already two of the very few phononic technologies of industrial relevance and can been found in a myriad of devices employing these nanoscale earthquakes on a chip. Acoustic radio frequency filters, for instance, are integral parts of wireless devices. SAWs in particular find applications in life sciences and microfluidics for sensing and mixing of tiny amounts of liquids. In addition to this continuously growing number of applications, SAWs are ideally suited to probe and control elementary excitations in condensed matter at the limit of single quantum excitations. Even collective excitations, classical or quantum are nowadays coherently interfaced by SAWs.</jats:p> jats:pThis wide, highly diverse, interdisciplinary and continuously expanding spectrum literally unites advanced sensing and manipulation applications. Remarkably, SAW technology is inherently multiscale and spans from single atomic or nanoscopic units up even to the millimeter scale.</jats:p> jats:pThe aim of this Roadmap is to present a snapshot of the present state of surface acoustic wave science and technology in 2019 and provide an opinion on the challenges and opportunities that the future holds from a group of renown experts, covering the interdisciplinary key areas, ranging from fundamental quantum effects to practical applications of acoustic devices in life science.</jats:p>

Description

Keywords

surface acoustic waves, phononics, quantum acoustics

Journal Title

Journal of Physics D: Applied Physics

Conference Name

Journal ISSN

0022-3727
1361-6463

Volume Title

52

Publisher

IOP Publishing
Sponsorship
European Commission Horizon 2020 (H2020) Marie Sk?odowska-Curie actions (642688)
Engineering and Physical Sciences Research Council (EP/J003417/1)
EU Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie Grant Agreement No. 642688 (SAWtrain).