The Wave-Front Correction System for the Sunrise Balloon-Borne Solar Observatory
arXiv:1009.3196 · doi:10.1007/s11207-010-9676-3
Abstract
This paper describes the wave-front correction system developed for the Sunrise balloon telescope, and provides information about its in-flight performance. For the correction of low-order aberrations, a Correlating Wave-Front Sensor (CWS) was used. It consisted of a six-element Shack-Hartmann wave-front sensor (WFS), a fast tip-tilt mirror for the compensation of image motion, and an active telescope secondary mirror for focus correction. The CWS delivered a stabilized image with a precision of 0.04 arcsec (rms), whenever the coarse pointing was better than 90 arcsec peak-to-peak. The automatic focus adjustment maintained a focus stability of 0.01 waves in the focal plane of the CWS. During the 5.5 day flight, good image quality and stability was achieved during 33 hours, containing 45 sequences that lasted between 10 and 45 minutes.
References in corpus (2)
Cited by in corpus (63)
- The Imaging Magnetograph eXperiment (IMaX) for the Sunrise balloon-borne solar observatory
- The Polarimetric and Helioseismic Imager on Solar Orbiter
- The second flight of the SUNRISE balloon-borne solar observatory: overview of instrument updates, the flight, the data and first results
- Solar Coronal Loops Associated with Small-scale Mixed Polarity Surface Magnetic Fields
- Structure and Dynamics of Isolated Internetwork Ca II H Bright Points Observed by Sunrise
- Waves in the lower solar atmosphere: the dawn of next-generation solar telescopes
- Comparison of solar photospheric bright points between SUNRISE observations and MHD simulations
- Transverse Oscillations in Slender Ca II H Fibrils Observed with Sunrise/SuFI
- Solar magnetoconvection and small-scale dynamo: Recent developments in observation and simulation
- High-frequency Oscillations in Small Magnetic Elements Observed with Sunrise/SuFI
- Migration of Ca II H bright points in the internetwork
- Slender Ca II H Fibrils Mapping Magnetic Fields in the Low Solar Chromosphere
- The magnetic drivers of campfires seen by the Polarimetric and Helioseismic Imager (PHI) on Solar Orbiter
- Vortex Flow Properties in Simulations of Solar Plage Region: Evidence for their role in chromospheric heating
- The frontier between Small-scale bipoles and Ephemeral Regions in the solar photosphere: Emergence and Decay of an Intermediate-scale bipole observed with IMaX/SUNRISE
- Spectral variability of photospheric radiation due to faculae I: The Sun and Sun-like stars
- A Tale of Two Emergences: Sunrise II Observations of Emergence Sites in a Solar Active Region
- Estimation of the magnetic flux emergence rate in the quiet Sun from Sunrise data
- Brightness of Solar Magnetic Elements as a Function of Magnetic Flux at High Spatial Resolution
- The formation and disintegration of magnetic bright points observed by Sunrise/IMaX
- The history of a quiet-Sun magnetic element revealed by IMaX/SUNRISE
- Inclinations of small quiet-Sun magnetic features based on a new geometric approach
- Magneto-static modelling from SUNRISE/IMaX: Application to an active region observed with SUNRISE II
- Oscillations on width and intensity of slender Ca II H fibrils from Sunrise/SuFI
- Sunrise III: Overview of Observatory and Instruments
- Photospheric response to EB-like event
- A new MHD-assisted Stokes inversion technique
- Dynamics of multi-cored magnetic structures in the quiet Sun
- Statistical evolution of quiet-Sun small scale magnetic features using Sunrise observations
- The potential of many-line inversions of photospheric spectropolarimetric data in the visible and near UV
- Automatic Method for Identifying Photospheric Bright Points and Granules Observed by Sunrise
- Morphological properties of slender Ca II H fibrils observed by SUNRISE II
- Prospects of solar magnetometry - from ground and in space
- Convectively driven sinks and magnetic fields in the quiet Sun
- Test magnetohydrostatic extrapolation with radiative MHD simulation of a solar flare
- Study of the polarization produced by the Zeeman effect in the solar Mg I b lines
- Chromospheric polarimetry through multi-line observations of the 850 nm spectral region II: A magnetic flux tube scenario
- Observations of solar chromospheric heating at sub-arcsec spatial resolution
- Simulated Magnetic Flows in the Solar Photosphere
- Kinematics of Magnetic Bright Features in the Solar Photosphere
- First high-resolution images of the Sun in the 2796 Å Mg II k line
- Transport of magnetic flux from the canopy to the internetwork
- Intensity contrast of solar plage as a function of magnetic flux at high spatial resolution
- Magnetohydrostatic modeling of AR11768 based on a SUNRISE/IMaX vector magnetogram
- The dark side of solar photospheric G-band bright points
- The importance of horizontal Poynting flux in the solar photosphere
- Cancellation of Small-Scale Magnetic Features
- Slow magneto-acoustic waves in simulations of a solar plage region carry enough energy to heat the chromosphere
- Magnetograms underestimate even unipolar magnetic flux nearly everywhere on the solar disk
- Chromospheric polarimetry through multi-line observations of the 850 nm spectral region III: Chromospheric jets driven by twisted magnetic fields
- Moving Magnetic Features around a Pore
- On the Magnetic Nature of an Exploding Granule as Revealed by Sunrise/IMaX
- Dynamics of small-scale convective motions
- The Sunrise Chromospheric Infrared Spectro-Polarimeter SCIP: an instrument for SUNRISE III
- Solar polarimetry in the K I line: A novel possibility for a stratospheric balloon
- Power spectrum of turbulent convection in the solar photosphere
- Spectropolarimetric evidence for a siphon flow along an emerging magnetic flux tube
- Connecting the Wilson depression to the magnetic field of sunspots
- Markov properties of the magnetic field in the quiet solar photosphere
- Centre-to-limb properties of small, photospheric quiet Sun jets
- Sunrise III: The Wavefront Correction System
- Coronal voids and their magnetic nature
- Maximum Entropy Limit of Small-scale Magnetic Field Fluctuations in the Quiet Sun