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| Funder | European Commission |
|---|---|
| Recipient Organization | Tel Aviv University |
| Country | Israel |
| Start Date | Jan 01, 2023 |
| End Date | Dec 31, 2027 |
| Duration | 1,825 days |
| Number of Grantees | 1 |
| Roles | Coordinator |
| Data Source | European Commission |
| Grant ID | 101078192 |
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.
Tel Aviv University
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