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Showing 1 to 4 of 4 for “"Laboratory for Optical Physics and Engineering"”.

  1. Characterization of a molded plastic array of ten microplasma jet devices

    … in plastic substrates using inexpensive tools and materials. A simple molding process used for creating microplasma channels has been developed at the Laboratory for Optical Physics and Engineering. These devices have provided the opportunity to investigate characteristics and potential …

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  2. Aluminum/aluminum oxide structured microplasma devices: Paschen's Law and applications

    … of inexpensive wet electrochemical processes and provide an attractive tool to study plasma physics by modifying the device geometry as desired. A wet electrochemical process, used for fabricating microscale cavities and developed at the Laboratory for Optical Physics and Engineering, provides …

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  3. Electromagnetically active artificial material comprising multidimensional microplasma photonic crystals

    … the active component have been realized in the Laboratory for Optical Physics and Engineering (LOPE) at the University of Illinois. Real-time tuning of the propagation properties of the crystals in the 110-170 GHz spectral interval has been achieved in such photonic crystals by changing the …

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  4. Dissociation of carbon dioxide in atmospheric pressure microchannel plasma devices

    … at breakdown voltages lower than 1 kVRMS. Optical emissions of molecular and ionic fragments of carbon dioxide were observed in emission spectra of visible wavelength range measured through a transparent dielectric coated with ITO electrode. Quantitative analysis by mass spectrometry …

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