Germanium optical fibers have been fabricated using a high pressure chemical deposition technique to deposit the semiconductor material inside a silica capillary. The amorphous germanium core material has a small percentage of hydrogen that saturates the dangling bonds to reduce absorption loss. Optical transmission measurements were performed to determine the linear losses over a broad mid-infrared wavelength range with the lowest loss recorded at 10.6 µm. The extended transmission range measured in the germanium fibers demonstrates their potential for use in mid-infrared applications
For the last decade, germanium has been proposed as an excellent material for passive mid-infrared (...
All-optical modulation is demonstrated in low loss germanium-on-silicon waveguides at mid-infrared w...
The mid-infrared (IR) region of electromagnetic spectrum (2-15 ) has numerous applications, ranging ...
Mid-infrared semiconductor photonics is an emerging field with wide ranging applications. One stream...
The transmission properties of hydrogenated amorphous silicon core fibers are characterized from the...
Transmission in the mid-infrared (2-15 µm) spectrum has many applications, including biomedical surg...
Thesis (M.S.)--Boston UniversityThe mid-Infrared (mid-IR: 3-12 µm wavelength range) spectral range r...
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-si...
Nonlinear silicon photonics in the mid-infrared (mid-IR) is attracting increased interest with appli...
Low loss Ge-on-Si waveguides are demonstrated in the 8 – 14 μm atmospheric transmission window, a te...
Germanium is a material of high interest for midinfrared (MIR) integrated photonics due to its CMOS ...
This abstract reviews our progress in characterizing nonlinear properties of low loss germanium-on-s...
We review our progress in the characterization of the nonlinear transmission properties of low loss ...
Germanium has become a material of high interest for mid-infrared (MIR) integrated photonics due to ...
For the last decade, germanium has been proposed as an excellent material for passive mid-infrared (...
For the last decade, germanium has been proposed as an excellent material for passive mid-infrared (...
All-optical modulation is demonstrated in low loss germanium-on-silicon waveguides at mid-infrared w...
The mid-infrared (IR) region of electromagnetic spectrum (2-15 ) has numerous applications, ranging ...
Mid-infrared semiconductor photonics is an emerging field with wide ranging applications. One stream...
The transmission properties of hydrogenated amorphous silicon core fibers are characterized from the...
Transmission in the mid-infrared (2-15 µm) spectrum has many applications, including biomedical surg...
Thesis (M.S.)--Boston UniversityThe mid-Infrared (mid-IR: 3-12 µm wavelength range) spectral range r...
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-si...
Nonlinear silicon photonics in the mid-infrared (mid-IR) is attracting increased interest with appli...
Low loss Ge-on-Si waveguides are demonstrated in the 8 – 14 μm atmospheric transmission window, a te...
Germanium is a material of high interest for midinfrared (MIR) integrated photonics due to its CMOS ...
This abstract reviews our progress in characterizing nonlinear properties of low loss germanium-on-s...
We review our progress in the characterization of the nonlinear transmission properties of low loss ...
Germanium has become a material of high interest for mid-infrared (MIR) integrated photonics due to ...
For the last decade, germanium has been proposed as an excellent material for passive mid-infrared (...
For the last decade, germanium has been proposed as an excellent material for passive mid-infrared (...
All-optical modulation is demonstrated in low loss germanium-on-silicon waveguides at mid-infrared w...
The mid-infrared (IR) region of electromagnetic spectrum (2-15 ) has numerous applications, ranging ...