The terahertz (THz) spectrum, which lies on the seam between the optical and electrical spectral ranges, is ubiquitously important for science and technology, from chemical/biological sensing to stellar exploration. Nevertheless,...
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Información proyecto TOP-BLG
Duración del proyecto: 59 meses
Fecha Inicio: 2023-01-01
Fecha Fin: 2027-12-31
Líder del proyecto
TEL AVIV UNIVERSITY
No se ha especificado una descripción o un objeto social para esta compañía.
TRL
4-5
Presupuesto del proyecto
2M€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
The terahertz (THz) spectrum, which lies on the seam between the optical and electrical spectral ranges, is ubiquitously important for science and technology, from chemical/biological sensing to stellar exploration. Nevertheless, the development of THz applications has been hindered by the sparsity of high-performance and low-cost optoelectronic devices, due to the limited response of common electronic and optical materials in this spectral range. Here, I propose to develop a new THz optoelectronic platform that is based on 2D materials of bilayer graphene structures. Taking this approach, I will realize a variety of new THz optoelectronic devices that can be electrically controlled and are highly compact and low-cost. Outperforming the state -of-the-art, TOP-BLG will constitute a transformative breakthrough in THz optoelectronic devices. Beyond THz technology, I envision that TOP-BLG will have great impact on the integration and dissemination of 2D materials into the microelectronics/optoelectronics technological market.