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- W1640570081 abstract "Studies of ablation rates in wire arrays show a strong correlation between ablation rate and global magnetic field. We, therefore, designed experiments using a single wire with a closely placed return current conductor to obtain straightforward measurements of ablation rates in the presence of strong “global” magnetic fields similar to those seen with cylindrical wire array experiments. The relatively simple geometry was intended to allow straightforward direct observation of coronal plasma flow with a laser interferometer and material density measurements to be made in and around the core with an X‐pinch backlighter. Such experiments were carried out with 80–180 kA peak current per wire on Cornell’s 40ns rise time XP pulsed power machine. The exploding wire and/or gas desorbed from the pusher wire appears to have enabled current to be driven across the gap between the object wire and the pusher, substantially complicating the geometry. However, we were able to observe quasi‐periodic modulations of the coronal plasma similar to those seen in cylindrical wire arrays as well as longer wavelength modulations of the wire cores. We found that the wavelength of the coronal plasma modulations were highly dependent on wire material. We also found that reversing the current direction and thereby the radial electric field direction greatly influenced the expansion of the wire cores." @default.
- W1640570081 created "2016-06-24" @default.
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- W1640570081 date "2006-01-01" @default.
- W1640570081 modified "2023-09-28" @default.
- W1640570081 title "Plasma Dynamics of a Single Wire with Closely Coupled Return Current" @default.
- W1640570081 doi "https://doi.org/10.1063/1.2159329" @default.
- W1640570081 hasPublicationYear "2006" @default.
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