HR: 1340h
AN: SH53A-1049 [Abstracts]
TI: Radiometric Calibration of EUNIS-06 With Theoretical Predicted `Insensitive' Line Ratios
AU: * Wang, T
EM: wangtj@helio.gsfc.nasa.gov
AF: Department of Physics,
Catholic University of America, 200 Hannan Hall, 620 Michigan Ave NE, Washington, DC 20064, United States
AU: * Wang, T
EM: wangtj@helio.gsfc.nasa.gov
AF: NASA's Goddard Space Flight Center, NASA GSFC-Code 671, Bldg 21, Greenbelt, MD
20771, United States
AU: Brosius, J W
EM: brosius@comstoc.gsfc.nasa.gov
AF: Department of Physics,
Catholic University of America, 200 Hannan Hall, 620 Michigan Ave NE, Washington, DC 20064, United States
AU: Brosius, J W
EM: brosius@comstoc.gsfc.nasa.gov
AF: NASA's Goddard Space Flight Center, NASA GSFC-Code 671, Bldg 21, Greenbelt, MD
20771, United States
AU: Thomas, R J
EM: Roger.J.Thomas@nasa.gov
AF: NASA's Goddard Space Flight Center, NASA GSFC-Code 671, Bldg 21, Greenbelt, MD
20771, United States
AU: Rabin, D M
EM: Douglas.M.Rabin@nasa.gov
AF: NASA's Goddard Space Flight Center, NASA GSFC-Code 671, Bldg 21, Greenbelt, MD
20771, United States
AB:
The Extreme-Ultraviolet Normal-Incidence Spectrograph (EUNIS) is a sounding-rocket payload that obtains
imaged high-resolution spectra of solar active and quiet-Sun regions, providing information about the corona and
upper transition region. EUNIS incorporates two independent, co-pointing imaging spectrographs, one covering
EUV lines between 300 and 370 Å\ seen in first order (the longwave [LW] channel), and a second covering lines
between 170 and 205 Å\ seen in second order (the shortwave [SW] channel). Shortly after the payload's initial
successful flight on 2006 April 12, a complete end-to-end radiometric calibration of its LW bandpass was carried
out at the Rutherford Appleton Laboratory in England. Here we develop and apply a technique for deriving the
absolute radiometric calibration of its SW bandpass from these direct LW results by means of density- and
temperature-insensitive line intensity ratios. The first step is to use the EUNIS LW calibration to get absolute
intensities for EUV lines recorded from solar positions along its LW slit during the 2006 flight. Then co-registered
SOHO/CDS images taken within minutes of the flight are used to transfer these absolute values to solar
locations observed by the EUNIS SW slit, spatially offset by about 1 arcmin. Finally, theoretical `insensitive' line
ratios obtained from CHIANTI allow us to determine absolute intensities of emission lines within the EUNIS SW
bandpass from those observed in its LW channel. A total of 29 ratios composed of 11 LW and 15 SW emission
lines from Fe~{\small X} - Fe~{\small XIII} yield an instrumental response curve that matches very well to a relative
calibration which relied on combining measurements of individual optical components. The second EUNIS
flight, now scheduled for 2007 October 30, will make coordinated observations and provide similar calibration
updates for Hinode/EIS. We will also present some preliminary results from the new observations. EUNIS is
supported by the NASA Heliophysics Division through its Low Cost Access to Space Program in Solar and
Heliospheric Physics.
DE: 7500 SOLAR PHYSICS, ASTROPHYSICS, AND ASTRONOMY
DE: 7509 Corona
DE: 7546 Transition region
DE: 7549 Ultraviolet emissions
DE: 7594 Instruments and techniques
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2007 Fall Meeting