Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enhance the application space of photonic integrated circuits (PICs). Thermal incandescent sources are superior to other common mid-IR emitters based on semiconductor materials in terms of PIC compatibility, manufacturing costs, and bandwidth. Ideal thermal emitters would radiate directly into the desired modes of the PIC waveguides via near-field coupling and would be stable at very high temperatures. Graphene is a semi-metallic two-dimensional material with comparable emissivity to thin metallic thermal emitters. It allows maximum coupling into waveguides by placing it directly into their evanescent fields. Here, we demonstrate graphene mid-IR...
Infrared gas sensors have been proven promising for broad applications in Internet of Things and Ind...
By means of characteristic matrix method, we make a theoretical investigation on the properties of t...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...
Low-cost and easily integrable mid-infrared (MIR) sources are highly desired for photonic integrated...
Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enh...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
Mid-infrared group IV photonics is a vibrant field, which aims to migrate techniques used for near-i...
Group IV platforms can operate at longer wavelengths due to their low material losses. By combining ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
The development of compact and fieldable mid-infrared (mid-IR) spectroscopy devices represents a cri...
Thermo-optical tuning of the refractive index is one of the pivotal operations performed in integrat...
Mid-Infrared thermal emission sources based on graphene were investigated both experimentally and si...
Journal ArticleWe have investigated the spatial and spectral characteristics of mid-infrared thermal...
In last years, the introduction of 2-dimensional materials such as graphene has revolutionized the w...
Graphene is an ideal material for integrated nonlinear optics thanks to its strong light–matter inte...
Infrared gas sensors have been proven promising for broad applications in Internet of Things and Ind...
By means of characteristic matrix method, we make a theoretical investigation on the properties of t...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...
Low-cost and easily integrable mid-infrared (MIR) sources are highly desired for photonic integrated...
Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enh...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
Mid-infrared group IV photonics is a vibrant field, which aims to migrate techniques used for near-i...
Group IV platforms can operate at longer wavelengths due to their low material losses. By combining ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
The development of compact and fieldable mid-infrared (mid-IR) spectroscopy devices represents a cri...
Thermo-optical tuning of the refractive index is one of the pivotal operations performed in integrat...
Mid-Infrared thermal emission sources based on graphene were investigated both experimentally and si...
Journal ArticleWe have investigated the spatial and spectral characteristics of mid-infrared thermal...
In last years, the introduction of 2-dimensional materials such as graphene has revolutionized the w...
Graphene is an ideal material for integrated nonlinear optics thanks to its strong light–matter inte...
Infrared gas sensors have been proven promising for broad applications in Internet of Things and Ind...
By means of characteristic matrix method, we make a theoretical investigation on the properties of t...
Graphene and related two-dimensional materials are promising candidates for atomically thin, flexibl...