Shock layer temperature profiles are obtained through analysis of radiation from shock layers produced by a blunt body inserted in an arc jet flow. Spectral measurements of N2(+) have been made at 0.5 inch, 1.0 inch, and 1.4 inches from the blunt body. A technique is developed to measure the vibrational and rotational temperatures of N2(+). Temperature profiles from the radiation layers show a high temperature near the shock front and decreasing temperature near the boundary layer. Precise temperature measurements could not be made using this technique due to the limited resolution. Use of a high resolution grating will help to make a more accurate temperature determination. Laser induced fluorescence technique is much better since it gives...
Electron beam technique of measuring molecular rotational and vibrational temperatures of nitrogen i...
This paper reports on measurements of freestream nitric oxide (NO) rotational and vibrational temper...
Noisy, non-resolved emission spectra of the (0,0) 391.4 nm N$\text{}_{2}$$\text{}^{+}$ molecular ban...
An analysis was made of N2 emission from 8.72 MJ/kg shock layer at 2.54, 1.91, and 1.27 cm positions...
Spectra of the shock layer radiation incident on the stagnation point of a blunt body placed in an a...
Applying atomic and molecular physics to the analysis of the radiation emitted from the arc jet flow...
A technique is developed to determine the rotational temperature of nitrogen molecular ion, N2(+), f...
Data from a pure nitrogen test series in the Electric Arc Shock Tube Facility were previously report...
To investigate the influence of electronic state on the relaxation process of nitrogen molecule behi...
We examine the spatial temperature profile in the non-equilibrium relaxation region behind a statio...
Spectroscopic method for taking nonequilibrium shock front rotational, vibrational, and electronic t...
An arc-heated wind tunnel is one of the most important facilities to reproduce the high-temperature ...
In the present paper the measured values of vibrational temperature behind strong shock waves are co...
Flow near the sonic throat is spectroscopically measured to obtain the vibrational and rotational te...
Broadband single pulse coherent anti-Stokes Raman scattering (CARS) experiments employing a folded-b...
Electron beam technique of measuring molecular rotational and vibrational temperatures of nitrogen i...
This paper reports on measurements of freestream nitric oxide (NO) rotational and vibrational temper...
Noisy, non-resolved emission spectra of the (0,0) 391.4 nm N$\text{}_{2}$$\text{}^{+}$ molecular ban...
An analysis was made of N2 emission from 8.72 MJ/kg shock layer at 2.54, 1.91, and 1.27 cm positions...
Spectra of the shock layer radiation incident on the stagnation point of a blunt body placed in an a...
Applying atomic and molecular physics to the analysis of the radiation emitted from the arc jet flow...
A technique is developed to determine the rotational temperature of nitrogen molecular ion, N2(+), f...
Data from a pure nitrogen test series in the Electric Arc Shock Tube Facility were previously report...
To investigate the influence of electronic state on the relaxation process of nitrogen molecule behi...
We examine the spatial temperature profile in the non-equilibrium relaxation region behind a statio...
Spectroscopic method for taking nonequilibrium shock front rotational, vibrational, and electronic t...
An arc-heated wind tunnel is one of the most important facilities to reproduce the high-temperature ...
In the present paper the measured values of vibrational temperature behind strong shock waves are co...
Flow near the sonic throat is spectroscopically measured to obtain the vibrational and rotational te...
Broadband single pulse coherent anti-Stokes Raman scattering (CARS) experiments employing a folded-b...
Electron beam technique of measuring molecular rotational and vibrational temperatures of nitrogen i...
This paper reports on measurements of freestream nitric oxide (NO) rotational and vibrational temper...
Noisy, non-resolved emission spectra of the (0,0) 391.4 nm N$\text{}_{2}$$\text{}^{+}$ molecular ban...