Graphene Terahertz Devices for Sensing and Communication
arXiv:2402.11357 · doi:10.1002/smll.202401151
Abstract
Graphene-based terahertz (THz) devices have emerged as promising platforms for a variety of applications, leveraging graphene's unique optoelectronic properties. This review explores recent advancements in utilizing graphene in THz technology, focusing on two main aspects: THz molecular sensing and THz wave modulation. In molecular sensing, the environment-sensitive THz transmission and emission properties of graphene are utilized for enabling molecular adsorption detection and biomolecular sensing. This capability holds significant potential, from the detection of pesticides to DNA at high sensitivity and selectivity. In THz wave modulation, crucial for next-generation wireless communication systems, graphene demonstrates remarkable potential in absorption modulation when gated. Novel device structures, spectroscopic systems, and metasurface architectures have enabled enhanced absorption and wave modulation. Furthermore, techniques such as spatial phase modulation and polarization manipulation have been explored. From sensing to communication, graphene-based THz devices present a wide array of opportunities for future research and development. Finally, advancements in sensing techniques not only enhance biomolecular analysis but also contribute to optimizing graphene's properties for communication by enabling efficient modulation of electromagnetic waves. Conversely, developments in communication strategies inform and enhance sensing capabilities, establishing a mutually beneficial relationship.
References in corpus (19)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
- Detection of Individual Gas Molecules Absorbed on Graphene
- Graphene plasmonics
- Measurement of the Optical Conductivity of Graphene
- Excitonic Effects on the Optical Response of Graphene and Bilayer Graphene
- Terahertz and Infrared Spectroscopy of Gated Large-Area Graphene
- Broadband Polarizers Based on Graphene Metasurfaces
- Extreme sensitivity of graphene photoconductivity to environmental gases
- Highly efficient and broadband wide-angle Holography Using Patch-Dipole Nano-antenna Reflectarrays
- Electronic control of extraordinary terahertz transmission through subwavelength metal hole arrays
- Observation of suppressed terahertz absorption in photoexcited graphene
- Electrically Tunable Four-Wave-Mixing in Graphene Heterogeneous Fiber for Individual Gas Molecule Detection
- Spatially resolved pump-probe study of single-layer graphene produced by chemical vapor deposition
- Microscopic description of intraband absorption in graphene: the occurrence of transient negative differential transmission
- Multi-Wideband Terahertz Communications via Tunable Graphene-based Metasurfaces in 6G Networks
- Simplified formulas for the generation of terahertz waves from semiconductor surfaces excited with a femtosecond laser
- Terahertz Dynamics of Quantum-Confined Electrons in Carbon Nanomaterials