Optomechanical terahertz detection with single meta-atom resonator

被引:0
作者
Cherif Belacel
Yanko Todorov
Stefano Barbieri
Djamal Gacemi
Ivan Favero
Carlo Sirtori
机构
[1] Laboratoire Matériaux et Phénomènes Quantiques,
[2] Université Paris Diderot,undefined
[3] Sorbonne Paris Cité,undefined
[4] CNRS-UMR 7162,undefined
[5] IEMN (Institute of Electronics,undefined
[6] Microelectronics and Nanotechnology),undefined
[7] University of Lille and CNRS,undefined
[8] UMR 8520,undefined
来源
Nature Communications | / 8卷
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摘要
Most of the common technologies for detecting terahertz photons (>1 THz) at room temperature rely on slow thermal devices. The realization of fast and sensitive detectors in this frequency range is indeed a notoriously difficult task. Here we propose a novel device consisting of a subwavelength terahertz meta-atom resonator, which integrates a nanomechanical element and allows energy exchange between the mechanical motion and the electromagnetic degrees of freedom. An incident terahertz wave thus produces a nanomechanical signal that can be read out optically with high precision. We exploit this concept to demonstrate a terahertz detector that operates at room temperature with high sensitivity and a much higher frequency response compared to standard detectors. Beyond the technological issue of terahertz detection, our architecture opens up new perspectives for fundamental science of light–matter interaction at terahertz frequencies, combining optomechanical approaches with semiconductor quantum heterostructures.
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