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Abstract
The total number of electrons in a classical microplasma can be non-intrusively measured through elastic in-phase coherent microwave scattering (CMS). Here, we establish a theoretical basis for the CMS diagnostic technique with an emphasis on Thomson and collisional scattering in short, thin unmagnetized plasma media. Experimental validation of the diagnostic is subsequently performed via linearly polarized, variable frequency (10.5–12 GHz) microwave scattering off laser induced 1–760 Torr air-based microplasmas (287.5 nm O2 resonant photoionization by ~ 5 ns, < 3 mJ pulses) with diverse ionization and collisional features. Namely, conducted studies include a verification of short-dipole-like radiation behavior, plasma volume imaging via ICCD photography, and measurements of relative phases, total scattering cross-sections, and total number of electrons
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Details
1 Purdue University, School of Aeronautics and Astronautics, West Lafayette, USA (GRID:grid.169077.e) (ISNI:0000 0004 1937 2197)
2 Purdue University, School of Mechanical Engineering, West Lafayette, USA (GRID:grid.169077.e) (ISNI:0000 0004 1937 2197)
3 Princeton University, Mechanical and Aerospace Engineering, Princeton, USA (GRID:grid.16750.35) (ISNI:0000 0001 2097 5006)




