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Recent advances in the development of materials for terahertz metamaterial sensing
Terahertz metamaterial sensing (TMS) is a new interdisciplinary technology. A TMS system
employs terahertz waves as the pum** source, these then interact with the sample and …
employs terahertz waves as the pum** source, these then interact with the sample and …
2D material optoelectronics for information functional device applications: status and challenges
Graphene and the following derivative 2D materials have been demonstrated to exhibit rich
distinct optoelectronic properties, such as broadband optical response, strong and tunable …
distinct optoelectronic properties, such as broadband optical response, strong and tunable …
Real-time terahertz imaging with a single-pixel detector
RI Stantchev, X Yu, T Blu… - Nature …, 2020 - nature.com
Terahertz (THz) radiation is poised to have an essential role in many imaging applications,
from industrial inspections to medical diagnosis. However, commercialization is prevented …
from industrial inspections to medical diagnosis. However, commercialization is prevented …
Recent advances in terahertz technology for biomedical applications
Terahertz instrumentation has improved significantly in recent years such that THz imaging
systems have become more affordable and easier to use. THz systems can now be operated …
systems have become more affordable and easier to use. THz systems can now be operated …
Graphene plasmonics: a platform for 2D optics
Abstract 2D optics is gradually emerging as a frontier in modern optics. Plasmons in
graphene provide a prominent platform for 2D optics in which the light is squeezed into …
graphene provide a prominent platform for 2D optics in which the light is squeezed into …
Enhancing light‐matter interaction in 2D materials by optical micro/nano architectures for high‐performance optoelectronic devices
Two‐dimensional materials are a promising solution for next‐generation electronic and
optoelectronic devices due to their unique properties. Owing to the atomic thickness of 2D …
optoelectronic devices due to their unique properties. Owing to the atomic thickness of 2D …
Constructing metastructures with broadband electromagnetic functionality
RH Fan, B **ong, RW Peng, M Wang - Advanced Materials, 2020 - Wiley Online Library
Electromagnetic metastructures stand for the artificial structures with a characteristic size
smaller than the wavelength, which may efficiently manipulate the states of light. However …
smaller than the wavelength, which may efficiently manipulate the states of light. However …
Graphene terahertz devices for sensing and communication
Graphene‐based terahertz (THz) devices have emerged as promising platforms for a variety
of applications, leveraging graphene's unique optoelectronic properties. This review …
of applications, leveraging graphene's unique optoelectronic properties. This review …
[HTML][HTML] All-optical modulation technology based on 2D layered materials
In the advancement of photonics technologies, all-optical systems are highly demanded in
ultrafast photonics, signal processing, optical sensing and optical communication systems …
ultrafast photonics, signal processing, optical sensing and optical communication systems …
Tunable spin splitting of Laguerre–Gaussian beams in graphene metamaterials
Optical spin splitting has attracted significant attention owing to its potential applications in
quantum information and precision metrology. However, it is typically small and cannot be …
quantum information and precision metrology. However, it is typically small and cannot be …