A Magneto-Optical Filter-based system has been proposed as an optional payload for ASI’s low-budget Solar Mission ADAHELI, which has completed its Phase A feasibility study. The instrument is capable of providing simultaneous Dopplergrams, intensity and magnetic solar full-disk maps using the potassium 770 nm and sodium 589 nm solar Fraunhofer lines. The instrument is a version, re-designed for a space environment, of the one which has run an observing campaign at the South Pole in 2008 with unprecedented performance. The MOF-based system we present here is a low-cost, low-weight instrument, thus particularly fit to space applications, capable of providing stability and sensitivity of signals on long-term observations. The instrument will explore regions of the oscillation spectrum not available to other missions’ instruments.

Moretti, P., Berrilli, F., Bigazzi, A., Jefferies, S., Murphy, N., Roselli, L., et al. (2010). Future instrumentation for solar physics: a double channel MOF imager on board ASI Space Mission ADAHELI. ASTROPHYSICS AND SPACE SCIENCE, 328, 313-318 [10.1007/s10509-009-0251-z].

Future instrumentation for solar physics: a double channel MOF imager on board ASI Space Mission ADAHELI

BERRILLI, FRANCESCO;
2010-07-01

Abstract

A Magneto-Optical Filter-based system has been proposed as an optional payload for ASI’s low-budget Solar Mission ADAHELI, which has completed its Phase A feasibility study. The instrument is capable of providing simultaneous Dopplergrams, intensity and magnetic solar full-disk maps using the potassium 770 nm and sodium 589 nm solar Fraunhofer lines. The instrument is a version, re-designed for a space environment, of the one which has run an observing campaign at the South Pole in 2008 with unprecedented performance. The MOF-based system we present here is a low-cost, low-weight instrument, thus particularly fit to space applications, capable of providing stability and sensitivity of signals on long-term observations. The instrument will explore regions of the oscillation spectrum not available to other missions’ instruments.
lug-2010
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore FIS/05 - ASTRONOMIA E ASTROFISICA
English
Con Impact Factor ISI
Moretti, P., Berrilli, F., Bigazzi, A., Jefferies, S., Murphy, N., Roselli, L., et al. (2010). Future instrumentation for solar physics: a double channel MOF imager on board ASI Space Mission ADAHELI. ASTROPHYSICS AND SPACE SCIENCE, 328, 313-318 [10.1007/s10509-009-0251-z].
Moretti, P; Berrilli, F; Bigazzi, A; Jefferies, S; Murphy, N; Roselli, L; di Mauro, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/30447
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