Silicon photonics in the near-IR, up to 1.6 µm, is already one of key technologies in optical data communications, particularly short range. It also is being prospected for applications in quantum computing, artificial intelligence, optical signal processing, where complex photonic integration is to be combined with a large-volume fabrication. However, silicon photonics does not yet cover a large portion of applications in the mid-IR. In the wavelength range of 2–5 µm, environmental sensing, life sensing and security, all rely on optical signatures of molecular vibrations to identify complex individual chemical species. The markets for such analysis are huge and constantly growing, with a push for sensitivity, specificity, compactness, low-...
Germanium (Ge) has played a key role in silicon photonics as an enabling material for datacom applic...
In this paper we present our recent work on mid-infrared photonic integrated circuits for spectrosco...
In this paper we discuss silicon-based photonic integrated circuit technology for applications beyon...
International audienceIn less than a decade, the mid-infrared (mid-IR) spectral range (2.5-12 mu m) ...
International audienceIn less than a decade, the mid-infrared (mid-IR) spectral range (2.5-12 mu m) ...
International audienceIn less than a decade, the mid-infrared (mid-IR) spectral range (2.5-12 mu m) ...
Due to their good photonic and electronic properties, silicon and germanium have been intensively re...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
In recent years, the wavelength range over which silicon photonics can operate has been extended to...
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 mid- IR passive and ...
The mid-infrared spectral region, ~2–20 µm, is of interest for numerous sensing, medical, industrial...
Chemical bond spectroscopy, trace gas sensing, and medical diagnostics are all applications that ben...
In this paper we discuss silicon-based photonic integrated circuit technology for applications beyon...
Mid-IR silicon photonics is attracting interest due to a host of potential applications. As the mid-...
Germanium (Ge) has played a key role in silicon photonics as an enabling material for datacom applic...
In this paper we present our recent work on mid-infrared photonic integrated circuits for spectrosco...
In this paper we discuss silicon-based photonic integrated circuit technology for applications beyon...
International audienceIn less than a decade, the mid-infrared (mid-IR) spectral range (2.5-12 mu m) ...
International audienceIn less than a decade, the mid-infrared (mid-IR) spectral range (2.5-12 mu m) ...
International audienceIn less than a decade, the mid-infrared (mid-IR) spectral range (2.5-12 mu m) ...
Due to their good photonic and electronic properties, silicon and germanium have been intensively re...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
In recent years, the wavelength range over which silicon photonics can operate has been extended to...
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 mid- IR passive and ...
The mid-infrared spectral region, ~2–20 µm, is of interest for numerous sensing, medical, industrial...
Chemical bond spectroscopy, trace gas sensing, and medical diagnostics are all applications that ben...
In this paper we discuss silicon-based photonic integrated circuit technology for applications beyon...
Mid-IR silicon photonics is attracting interest due to a host of potential applications. As the mid-...
Germanium (Ge) has played a key role in silicon photonics as an enabling material for datacom applic...
In this paper we present our recent work on mid-infrared photonic integrated circuits for spectrosco...
In this paper we discuss silicon-based photonic integrated circuit technology for applications beyon...