Silicon photonics has traditionally focused on near infrared wavelengths, with tremendous progress seen over the past decade. However, more recently, research has extended into mid infrared wavelengths of 2 μm and beyond. Optical modulators are a key component for silicon photonics interconnects at both the conventional communication wavelengths of 1.3 μm and 1.55 μm, and the emerging mid-infrared wavelengths. The mid-infrared wavelength range is particularly interesting for a number of applications, including sensing, healthcare and communications. The absorption band of conventional germanium photodetectors only extends to approximately 1.55 μm, so alternative methods of photodetection are required for the mid-infrared wavelengths. One po...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
In the last several decades, there has been considerable research interest in silicon photonics base...
Complementary metal-oxide-semiconductor (CMOS)-compatible Ar+-implanted Si-waveguide p-i-n photodete...
Silicon photonics has traditionally focused on near infrared wavelengths, with tremendous progress s...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
The mid-infrared wavelength region contains absorption fingerprints of numerous molecules and theref...
The mid-infrared wavelength region offers a plethora of possible applications ranging from sensing, ...
As the silicon photonics field matures and a data-hungry future looms ahead, new technologies are re...
The mid-infrared wavelength region (3-20 µm) offers several application areas. In this paper we pres...
Group IV mid-infrared photonics is attracting more research interest lately. The main reason is a ho...
In this paper, a MIR silicon modulator operating at 2 μm wavelength is experimentally demonstrated. ...
The mid-infrared wavelength region is important for a number of application areas, two of which are ...
We discuss recent results in our work on Silicon Photonics. This includes both active and passive de...
The emergence of silicon photonics over the past two decades has established silicon as a preferred ...
Due to its excellent electronic and photonic properties, silicon is a good candidate for mid-infrare...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
In the last several decades, there has been considerable research interest in silicon photonics base...
Complementary metal-oxide-semiconductor (CMOS)-compatible Ar+-implanted Si-waveguide p-i-n photodete...
Silicon photonics has traditionally focused on near infrared wavelengths, with tremendous progress s...
Silicon and germanium are transparent up to approximately 8 µm and 15 µm, respectively, thus offerin...
The mid-infrared wavelength region contains absorption fingerprints of numerous molecules and theref...
The mid-infrared wavelength region offers a plethora of possible applications ranging from sensing, ...
As the silicon photonics field matures and a data-hungry future looms ahead, new technologies are re...
The mid-infrared wavelength region (3-20 µm) offers several application areas. In this paper we pres...
Group IV mid-infrared photonics is attracting more research interest lately. The main reason is a ho...
In this paper, a MIR silicon modulator operating at 2 μm wavelength is experimentally demonstrated. ...
The mid-infrared wavelength region is important for a number of application areas, two of which are ...
We discuss recent results in our work on Silicon Photonics. This includes both active and passive de...
The emergence of silicon photonics over the past two decades has established silicon as a preferred ...
Due to its excellent electronic and photonic properties, silicon is a good candidate for mid-infrare...
Silicon (Si) photonics is the science and technology of using the group-IV element of the periodic t...
In the last several decades, there has been considerable research interest in silicon photonics base...
Complementary metal-oxide-semiconductor (CMOS)-compatible Ar+-implanted Si-waveguide p-i-n photodete...