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Overview of the Rocket Experiment for Neutral Upwelling Sounding Rocket 2 (RENU2)
Author(s) -
Lessard Marc R.,
Fritz Bruce,
Sadler Brent,
Cohen Ian,
Kenward David,
Godbole Niharika,
Clemmons James H.,
Hecht James H.,
Lynch Kristina A.,
Harrington Meghan,
Roberts Thomas M.,
Hysell David,
Crowley Geoff,
Sigernes Fred,
Syrjäsuo Mikko,
Ellingsen Pål,
Partamies Noora,
Moen Jøran,
Clausen Lasse,
Oksavik Kjellmar,
Yeoman Timothy
Publication year - 2020
Publication title -
geophysical research letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.007
H-Index - 273
eISSN - 1944-8007
pISSN - 0094-8276
DOI - 10.1029/2018gl081885
Subject(s) - sounding rocket , upwelling , geophysics , ionosphere , rocket (weapon) , geology , payload (computing) , instrumentation (computer programming) , vela , meteorology , atmospheric sciences , environmental science , physics , oceanography , aerospace engineering , astrophysics , computer science , computer network , astronomy , network packet , pulsar , engineering , operating system
The Rocket Experiment for Neutral Upwelling 2 (RENU2) rocket was launched on 13 December 2015 at 07:34 UT. The payload transited the cusp region during a neutral upwelling event, supported by a comprehensive set of onboard and ground‐based instrumentation. RENU2 data highlight two important processes. One is that a proper understanding of neutral upwelling by Poleward Moving Auroral Forms (PMAFs) requires a treatment that mimics the quasiperiodic passage of a sequence of PMAFs. As a PMAF reaches a flux tube, its physical consequences must be determined including the residual history of effects from previous passages, implying that understanding such a process requires an accounting of the system hysteresis. Second, RENU2 observations suggest that neutral density enhancements driven by precipitation and/or Joule heating can be highly structured in altitude and latitude. In addition, timescales involving neutral dynamics suggest that the structuring must be slowly changing, for example, over the course of 10 to tens of minutes.

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