Single crystal silicon carbide is a chemically inert transparent material with superior oxidation-resistant properties at elevated temperatures compared to black polycrystalline silicon carbide substrates. These improved properties make crystalline silicon carbide a good optical sensor material for harsh environments such as combustion chambers and turbine systems. Interferometric optical sensors are orders of magnitude more sensitive than electrical sensors and are proposed for these applications. Silicon carbide itself behaves as a Fabry-Perot etalon eliminating the need for an external interferometer for any measurement using this silicon carbide as a sensor. The principle of the optical sensor in this study is the temperature- and press...
A wavelength-tuned signal-processing approach is proposed for enabling direct unambiguous temperatur...
The goals of the first six months of this project were to begin laying the foundations for both the ...
A wavelength-tuned signal-processing approach is proposed for enabling direct unambiguous temperatur...
Crystalline silicon carbide is a chemically inert wide band gap semiconductor with good mechanical s...
The temperature-dependent optical properties of materials, such as refractive index and reflectivity...
The temperature-dependent optical properties of materials, such as refractive index and reflectivity...
This final report contains the main results from a 3-year program to further investigate the merits ...
In this program, Nuonics, Inc. has studied the fundamentals of a new Silicon Carbide (SiC) materials...
Crystalline silicon carbide is a wide bandgap semiconductor material with excellent optical properti...
Laser optical gas sensors are fabricated by using the crystalline silicon carbide polytype 6H-SiC, w...
Laser optical gas sensors are fabricated by using the crystalline silicon carbide polytype 6H-SiC, w...
The goals of the second six months of the Phase 2 of this project were to conduct first time experim...
Crystalline silicon carbide (SiC) is an attractive wide bandgap semiconductor material for gas senso...
We propose and demonstrate a temperature sensing method using an all-silicon carbide probe that comb...
We propose and demonstrate a temperature sensing method using an all-silicon carbide probe that comb...
A wavelength-tuned signal-processing approach is proposed for enabling direct unambiguous temperatur...
The goals of the first six months of this project were to begin laying the foundations for both the ...
A wavelength-tuned signal-processing approach is proposed for enabling direct unambiguous temperatur...
Crystalline silicon carbide is a chemically inert wide band gap semiconductor with good mechanical s...
The temperature-dependent optical properties of materials, such as refractive index and reflectivity...
The temperature-dependent optical properties of materials, such as refractive index and reflectivity...
This final report contains the main results from a 3-year program to further investigate the merits ...
In this program, Nuonics, Inc. has studied the fundamentals of a new Silicon Carbide (SiC) materials...
Crystalline silicon carbide is a wide bandgap semiconductor material with excellent optical properti...
Laser optical gas sensors are fabricated by using the crystalline silicon carbide polytype 6H-SiC, w...
Laser optical gas sensors are fabricated by using the crystalline silicon carbide polytype 6H-SiC, w...
The goals of the second six months of the Phase 2 of this project were to conduct first time experim...
Crystalline silicon carbide (SiC) is an attractive wide bandgap semiconductor material for gas senso...
We propose and demonstrate a temperature sensing method using an all-silicon carbide probe that comb...
We propose and demonstrate a temperature sensing method using an all-silicon carbide probe that comb...
A wavelength-tuned signal-processing approach is proposed for enabling direct unambiguous temperatur...
The goals of the first six months of this project were to begin laying the foundations for both the ...
A wavelength-tuned signal-processing approach is proposed for enabling direct unambiguous temperatur...