Title :
Effects of Phosphor Persistence on High-Speed Imaging of Transient Luminous Events
Author :
Jianqi Qin ; Pasko, Victor P. ; Celestin, Sebastien ; Cummer, Steven A. ; McHarg, Matthew G. ; Stenbaek-Nielsen, Hans C.
Author_Institution :
Dept. of Electr. Eng., Pennsylvania State Univ., University Park, PA, USA
Abstract :
High-speed intensified cameras are commonly used to observe and study the transient luminous events known as sprite halos and sprite streamers occurring in the Earth´s upper atmosphere in association with thunderstorm activity. In such observations, the phosphor persistence in the image intensifier, depending on its characteristic decay time, might lead to a significant distortion of the optical signals recorded by those cameras. In this paper, we analyze the observational data obtained using different camera systems to discuss the effects of phosphor persistence on high-speed video observations of sprites, and introduce a deconvolution technique to effectively reduce such effects. The discussed technique could also be used to enhance the high-speed images of other transient optical phenomena in the case when the phosphor persistence has a characteristic decay time that is comparable with the temporal resolution of the cameras required to resolve the phenomena.
Keywords :
deconvolution; geophysical image processing; ionospheric techniques; sprites; thunderstorms; video cameras; Earth upper atmosphere; camera system; characteristic decay time; deconvolution technique; high-speed images; high-speed intensified cameras; high-speed video observation; image intensifier; optical signal distortion; phosphor persistence effect; sprite halos; sprite streamers; thunderstorm activity; transient luminous event high-speed imaging; transient optical phenomena; Cameras; Deconvolution; High-speed optical techniques; Optical imaging; Phosphors; Sprites (computer); Streaming media; Deconvolution; high-speed imaging; phosphor persistence; plasma discharges; sprite streamers; transient luminous events; transient luminous events.;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2015.2445820