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Why Developing A Full-Sun UV Spectrograph Sounding Rocket Is Difficult but NecessaryFor a conference focused on a 20-year perspective of where we have been and where we are going, this talk will highlight specifically why we need a sounding rocket to lead the way in obtaining high-resolution UV spectroscopy of our sun-as-a-star. The currently available data is either sparse or at a much lower resolution when compared with Hubble (HST) spectra of other stars. Because of this, we cannot say with certainty if our Sun’s variability is typical. This limitation is hindering our quest to place our Sun in it’s rightful place on our star-charts. Ultraviolet light is a key component in determining this. Elements such as Hydrogen and Iron have strong emission lines here, and from them we can determine many things about the star from which they originate. The width of these spectral features can tell us about the relative plasma activity on the surface of the star, the abundance of those elements, and of course the temperatures. This has of course been done with many instruments that have very narrow field of views and/or narrow bandwidths. The only way to directly compare our Sun’s UV ”fingerprint” with other stars is to take an image of it in the same manner by which HST does: as a point source object. Our team’s aim has been to develop a sounding rocket capable of doing just that. Along the way, the many challenges we face are producing many solutions. A unique take on the traditional Rowland circle spectrograph will allow us to cover a large range of UV spectra with minimal moving parts. A novel in-situ gain calibration technique will be used in order to maintain the high level of radiometric accuracy desired. Naturally, complications arise when one takes UV measurements as you are flying out of earth’s atmosphere and back into it. Though it may be minor, the absorbed UV spectra from the atmosphere will have to be accounted for. In preparing for this, we have stumbled across a way in which those ”telluric” absorption lines may prove useful for spectral calibration purposes. In addition, raw data from previous sounding rocket missions may have hidden within them useful information for the atmospheric-physics community. In this talk, we will highlight the unique calibration problems and solutions we have faced, and how those are of greater importance to the greater heliophysics and atmospheric communities. With these amazing developments at hand, the future of heliophysics instrumentation is looking bright. This material is based upon work supported by the NSF EPSCoR RII-Track-1.2a (Non-invasive plasma diagnostics for LTP) Cooperative Agreement OIA-1655280. Any opinions, findings, and conclusions or recommendations expressed in this material are those of the authors and do not necessarily reflect the views of the National Science Foundation.
Document ID
20220016066
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Nicolas Donders
(University of Alabama in Huntsville Huntsville, Alabama, United States)
Genevieve Vigil
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Adam Kobelski
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Amy Winebarger
(Marshall Space Flight Center Redstone Arsenal, Alabama, United States)
Charles Kankleborg
(Montana State University Bozeman, Montana, United States)
Larry Paxton
(Johns Hopkins University Applied Physics Laboratory North Laurel, Maryland, United States)
Gary Zank
(University of Alabama in Huntsville Huntsville, Alabama, United States)
Date Acquired
October 25, 2022
Subject Category
Solar Physics
Meeting Information
Meeting: 20th Annual International Astrophysics Conference (AIAC)
Location: Santa Fe, NM
Country: US
Start Date: October 31, 2022
End Date: November 4, 2022
Sponsors: international Astrophysics Conference Committee
Funding Number(s)
WBS: 791926.02.05.02.31
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Single Expert
Keywords
NASA, UAH, MSU, Sounding Rocket, Aeronomy, Instrumentation, Calibration
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