The 2023 terahertz science and technology roadmap
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jats:titleAbstract</jats:title> jats:pTerahertz (THz) radiation encompasses a wide spectral range within the electromagnetic spectrum that extends from microwaves to the far infrared (100 GHz–∼30 THz). Within its frequency boundaries exist a broad variety of scientific disciplines that have presented, and continue to present, technical challenges to researchers. During the past 50 years, for instance, the demands of the scientific community have substantially evolved and with a need for advanced instrumentation to support radio astronomy, Earth observation, weather forecasting, security imaging, telecommunications, non-destructive device testing and much more. Furthermore, applications have required an emergence of technology from the laboratory environment to production-scale supply and in-the-field deployments ranging from harsh ground-based locations to deep space. In addressing these requirements, the research and development community has advanced related technology and bridged the transition between electronics and photonics that high frequency operation demands. The multidisciplinary nature of THz work was our stimulus for creating the 2017 THz Science and Technology Roadmap (Dhillon jats:italicet al</jats:italic> 2017 jats:italicJ. Phys. D: Appl. Phys.</jats:italic> jats:bold50</jats:bold> 043001). As one might envisage, though, there remains much to explore both scientifically and technically and the field has continued to develop and expand rapidly. It is timely, therefore, to revise our previous roadmap and in this 2023 version we both provide an update on key developments in established technical areas that have important scientific and public benefit, and highlight new and emerging areas that show particular promise. The developments that we describe thus span from fundamental scientific research, such as THz astronomy and the emergent area of THz quantum optics, to highly applied and commercially and societally impactful subjects that include 6G THz communications, medical imaging, and climate monitoring and prediction. Our Roadmap vision draws upon the expertise and perspective of multiple international specialists that together provide an overview of past developments and the likely challenges facing the field of THz science and technology in future decades. The document is written in a form that is accessible to policy makers who wish to gain an overview of the current state of the THz art, and for the non-specialist and curious who wish to understand available technology and challenges. A such, our experts deliver a ‘snapshot’ introduction to the current status of the field and provide suggestions for exciting future technical development directions. Ultimately, we intend the Roadmap to portray the advantages and benefits of the THz domain and to stimulate further exploration of the field in support of scientific research and commercial realisation.</jats:p>
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Funder: Alexander von Humboldt Foundation
Funder: Experienced Researcher Fellowship
Funder: DFG Collaborative
Funder: PAPIIT
Funder: Danish National Research Foundation
Funder: JSPS
Funder: STFC Centre for Instrumentation
Funder: UKSA Centre for Earth
Funder: Leverhulme Trust; doi: http://dx.doi.org/10.13039/501100000275
Funder: NRF
Funder: Royal Society; doi: http://dx.doi.org/10.13039/501100000288
Funder: Australian Government; doi: http://dx.doi.org/10.13039/100015539
Funder: Cancer Research UK; doi: http://dx.doi.org/10.13039/501100000289
Funder: University of Warwick; doi: http://dx.doi.org/10.13039/501100000741
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1361-6463
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European Research Council (716471)
Engineering and Physical Sciences Research Council (EP/P021859/1)
Engineering and Physical Sciences Research Council (EP/J017671/1)
EPSRC (via University College London (UCL)) (EP/T028475/1)