The mid-infrared (MIR) wavelength region contains unique absorption fingerprints of many molecules and substances. Therefore, the main application area in the MIR can be sensing. Si and Ge are transparent in this range (Si up to 8 μm, and Ge up to 15 μm) and due to their excellent electrical and optical properties and CMOS compatibility they can offer suitable platforms for the realisation of compact MIR sensors. However, claddings used for the telecom wavelength range are usually not suitable at longer wavelengths due to high absorption, so alternative solutions need to be investigated. In this paper we present our recent results on suspended Si and Ge devices (waveguides, couplers and detectors) that can exploit full transparency ranges o...
International audienceThe extension of silicon photonics towards the mid infrared (mid-IR) spectral ...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
Group IV photonics is a topical research field, with potential applications in diverse areas such as...
In this paper we present SOI, suspended Si, and Ge-on-Si photonic platforms and mid- IR passive and ...
In this paper we present SOI, suspended Si, and Ge-on-Si photonic platforms and mid-IR passive and a...
In this paper we present SOI, suspended Si, and Ge-on-Si photonic platforms and devices for the mid-...
In this paper we review our recent results on group IV mid-infrared photonic devices. In particular,...
In this paper we review our recent results on group IV mid-infrared photonic devices. In particular,...
In this paper we review our recent results on group IV mid-infrared photonic devices. In particular,...
Mid-IR silicon photonics is attracting interest due to a host of potential applications. As the mid-...
Due to their good photonic and electronic properties, silicon and germanium have been intensively re...
Both silicon and germanium are very interesting materials for mid-infrared applications, particularl...
We present three main material platforms: SOI, suspended Si and Ge on Si. We report low loss SOI wav...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
International audienceThe extension of silicon photonics towards the mid infrared (mid-IR) spectral ...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
Group IV photonics is a topical research field, with potential applications in diverse areas such as...
In this paper we present SOI, suspended Si, and Ge-on-Si photonic platforms and mid- IR passive and ...
In this paper we present SOI, suspended Si, and Ge-on-Si photonic platforms and mid-IR passive and a...
In this paper we present SOI, suspended Si, and Ge-on-Si photonic platforms and devices for the mid-...
In this paper we review our recent results on group IV mid-infrared photonic devices. In particular,...
In this paper we review our recent results on group IV mid-infrared photonic devices. In particular,...
In this paper we review our recent results on group IV mid-infrared photonic devices. In particular,...
Mid-IR silicon photonics is attracting interest due to a host of potential applications. As the mid-...
Due to their good photonic and electronic properties, silicon and germanium have been intensively re...
Both silicon and germanium are very interesting materials for mid-infrared applications, particularl...
We present three main material platforms: SOI, suspended Si and Ge on Si. We report low loss SOI wav...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
International audienceThe extension of silicon photonics towards the mid infrared (mid-IR) spectral ...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...