The Ar(³P₂) metastable density in the effluent of the cold atmospheric pressure plasma jet kINPen-sci was investigated as a function of the feed gas humidity, the gas curtain composition, and the distance from the nozzle by means of laser atomic absorption spectroscopy. The data set comprises the axial distributions of the Ar metastables as a function of these parameters.
Field | Value |
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Group | |
Authors | |
Release Date | 2021-01-27 |
Identifier | a2cababb-9e9f-4767-9234-6de87886adc3 |
Permanent Identifier (DOI) | |
Permanent Identifier (URI) | |
Is supplementing | |
Plasma Source Name | |
Plasma Source Application | |
Plasma Source Specification | |
Plasma Source Properties | Frequency: 860 MHz; Power: 1-3 W |
Plasma Medium Name | |
Plasma Medium Properties | Feed gas: 3 slm Ar with humidity contents up to 1370 ppm; Gas curtain: 5 slm N₂/O₂ mixture |
Plasma Medium Procedure | Part of the feed gas was guided through a water bubbler to humidify the feed gas. The humidity was determined by a chilled mirror hygrometer (EdgeTech, DewMaster). |
Plasma Diagnostics Name | |
Plasma Diagnostics Properties | Laser wavelength: 811.534 nm; Laser linewidth: ~15 fm (0.0002 cm⁻¹); |
Plasma Diagnostics Procedure | An acousto-optic modulated (AOM) laser system (EasyLAAS, neoplas control GmbH, Germany) was used to probe the optical Ar(1s₅-2p₉) transition. The beam was guided through an optical fiber to a beam splitter cube. 50% of the laser intensity was reflected into a second fiber, which was connected to a wavemeter (High Finesse, WSG-200) in order to determine the exact laser wavelength. The other 50% (approximately 50 μW) were focused by a lens (focal length 75 mm) to a spot of approximately 100 μm in the effluent of the plasma jet. The plasma jet’s position in axial and radial direction was adjusted by three step motors. In order to avoid the detection of plasma emission next to the transmitted laser light, the laser beam was filtered by a 10 nm bandpass filter at 810 nm. With a second lens, the beam was focused onto a photo detector (Femto, current amplifier HCA-S, 200 MHz band width), which was connected to an oscilloscope (Tektronix, DPO 4104) and read out by acustomized python code on a standard computer. |
Language | English |
License | |
Public Access Level | Public |
Contact Name | Klose, Sarah-Johanna |
Contact Email |
Data and Resources
- Ar metastable densities in the effluent of a filamentary APPJ - Fig. 2acsv
Fourier transform of the unfiltered detector signal. The laser beam was...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 2bcsv
Fourier transform of the filtered detector signal. The laser beam was...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 4csv
Example of the time evolution of the Ar* density at z = 0.1 mm, 70 ppm water...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 4_exponential decay (fit)csv
Example of the time evolution of the Ar* density at z = 0.1 mm, 70 ppm water...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 5a and 6acsv
Absorbance as a function of time for 70 ppm humidity in the feed gas, while...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 5b and 6bcsv
Absorbance as a function of time for 879 ppm humidity in the feed gas, while...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 7acsv
Ar* density as a function of time, the detected peaks, and the mean of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 7bcsv
Ar* density as a function of time, the detected peaks, and the mean of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 7ccsv
Ar* density as a function of time, the detected peaks, and the mean of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 7dcsv
Ar* density as a function of time, the detected peaks, and the mean of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 8acsv
Ratio of the Fourier amplitudes of the first harmonic and the fundamental...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 8bcsv
Ratio of the Fourier amplitudes of the first harmonic and the fundamental...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 8ccsv
Ratio of the Fourier amplitudes of the first harmonic and the fundamental...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 9acsv
Mean of the effective lifetimes of the (20) highest Ar* absorption peaks at...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 9bcsv
Mean of the effective lifetimes of the (20) highest Ar* absorption peaks at...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 9ccsv
Mean of the effective lifetimes of the (20) highest Ar* absorption peaks at...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 10_4slmN₂1slmO₂csv
Decay rates of the Ar* densities, obtained from the mean half time of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 10_5slmN₂csv
Decay rates of the Ar* densities, obtained from the mean half time of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 10_5slmO₂csv
Decay rates of the Ar* densities, obtained from the mean half time of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 10_decay rate (fit)csv
Decay rates of the Ar* densities, obtained from the mean half time of the (...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 11csv
Ar* density at z = 0.1 mm as a function of the humidity content in the feed...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 11_gas curtain compositions (fit)csv
Ar* density at z = 0.1 mm as a function of the humidity content in the feed...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 12acsv
Axial Ar* densities for various humidity contents in the feed gas and the...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 12bcsv
Axial Ar* densities for various humidity contents in the feed gas and the...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 12ccsv
Axial Ar* densities for various humidity contents in the feed gas and the...
Preview Download - Ar metastable densities in the effluent of a filamentary APPJ - Fig. 13csv
Upper limit of the OH and H density produced in the effluent and obtained...
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