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31
result(s) for
"Kolleck, M"
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The Filter Imager SuFI and the Image Stabilization and Light Distribution System ISLiD of the Sunrise Balloon-Borne Observatory: Instrument Description
by
Ebert, S.
,
Müller, R.
,
Tomasch, G.
in
Astrophysics and Astroparticles
,
Atmospheric Sciences
,
Image processing systems
2011
We describe the design of the
Sunrise
Filter Imager (SuFI) and the Image Stabilization and Light Distribution (ISLiD) unit onboard the
Sunrise
balloon borne solar observatory. This contribution provides the necessary information which is relevant to understand the instruments’ working principles, the relevant technical data, and the necessary information about calibration issues directly related to the science data.
Journal Article
The Sunrise Mission
by
Álvarez-Herrero, A.
,
Haberler, P.
,
Müller, R.
in
Astrophysics and Astroparticles
,
Atmospheric Sciences
,
Instrumentation
2011
The first science flight of the balloon-borne
Sunrise
telescope took place in June 2009 from ESRANGE (near Kiruna/Sweden) to Somerset Island in northern Canada. We describe the scientific aims and mission concept of the project and give an overview and a description of the various hardware components: the 1-m main telescope with its postfocus science instruments (the UV filter imager SuFI and the imaging vector magnetograph IMaX) and support instruments (image stabilizing and light distribution system ISLiD and correlating wavefront sensor CWS), the optomechanical support structure and the instrument mounting concept, the gondola structure and the power, pointing, and telemetry systems, and the general electronics architecture. We also explain the optimization of the structural and thermal design of the complete payload. The preparations for the science flight are described, including AIV and ground calibration of the instruments. The course of events during the science flight is outlined, up to the recovery activities. Finally, the in-flight performance of the instrumentation is discussed.
Journal Article
Fleisch für Dr. Jackson“: Organhandel in Spielfilmen und mögliche Beziehungen zur Realität
2017
Die verschiedenen „Transplantationsskandale“ in Deutschland haben in den letzten Jahren zu einer großen Verunsicherung in der Bevölkerung und zu einer rapiden Abnahme der Organspendebereitschaft geführt. Diese Tatsache war für uns der Anlass systematisch zu untersuchen, wie Transplantationen und möglicher Organhandel in Spielfilmen dargestellt wird und ob es hierbei mögliche Parallelen zur Wirklichkeit gibt. Hierbei wurde die Filme „Coma“ von Michael Crichtons von 1978 sowie der deutsche Fernsehfilm „Fleisch“ des deutschen Regisseurs Rainer Erler (erstmalig ausgestrahlt im ZDF 1979) untersucht. Die Handlungsstränge der Filme wurden analysiert und mit den deutschen „Transplantationsskandal“ sowie bekanntem internationalen Organhandel (insbesondere China) verglichen. Aufgrund unserer Analyse kommen wir zu dem Schluss, dass „Coma“ unserer Ansicht nach kein realitätsnahes Bild des Organhandels wiedergibt. Der Film „Fleisch“ dagegen bildet ein unserer Meinung nach auch in der Realität sich möglicherweise abspielendes Szenario ab. Als ein Beispiel für realen Organhandel haben wir die Volksrepublik China gewählt, der wiederholt vorgeworfen wird, Organe von politischen Häftlingen für Transplantationszwecke zu missbrauchen und gezielte Tötungen vorzunehmen, um an passende Organe zu gelangen. Der dargestellte Inhalt könnte dabei auch der Feder eines Hollywood-Drehbuchautors entspringen und zeigt, dass die Realität in ihrer Grausamkeit oft der Fiktion überlegen ist. Im Gegensatz hierzu sind die an deutschen Kliniken stattgefundenen Organspendeskandale, bei denen Ärzte Daten manipulierten, um ihren Patienten schneller ein Spenderorgane zu beschaffen, kein Beispiel für klassischen Organhandel. Filme schaffen es, den Menschen auch unangenehme und ernste Themen nahe zu bringen, mit denen der Zuschauer in der Realität oftmals keine Berührungspunkte hat und die ihm dadurch zunächst fremd erscheinen. Filme öffnen Türen zu fremden Welten. Dabei können sich die Inhalte, die in Kinofilmen gezeigt werden und die Form ihrer Darstellung auch auf die Sichtweise der Zuschauer auswirken und einen relevanten Einfluss auf die Meinungsbildung entfalten. Daher erscheint uns unsere Analyse wichtig, insbesondere auch für Nephrologen und Transplantationsmediziner.
Journal Article
The Filter Imager SuFI and the Image Stabilization andLight Distribution System ISLiD of the Sunrise Balloon-Borne Observatory: Instrument Description
2011
We describe the design of the Sunrise Filter Imager (SuFI) and the Image Stabilization and Light Distribution (ISLiD) unit onboard the Sunrise balloon borne solar observatory. This contribution provides the necessary information which is relevant to understand the instruments' working principles, the relevant technical data, and the necessary information about calibration issues directly related to the science data.
Journal Article
Spectropolarimetric investigation of magnetohydrodynamic wave modes in the photosphere: First results from PHI on board Solar Orbiter
by
D Orozco Suárez
,
M Balaguer Jiménez
,
Alvarez-Herrero, A
in
Circular polarization
,
Data acquisition
,
Magnetohydrodynamic waves
2023
In November 2021, Solar Orbiter started its nominal mission phase. The remote-sensing instruments on board the spacecraft acquired scientific data during three observing windows surrounding the perihelion of the first orbit of this phase. The aim of the analysis is the detection of magnetohydrodynamic (MHD) wave modes in an active region by exploiting the capabilities of spectropolarimetric measurements. The High Resolution Telescope (HRT) of the Polarimetric and Helioseismic Imager (SO/PHI) on board the Solar Orbiter acquired a high-cadence data set of an active region. This is studied in the paper. B-\\(\\) and phase-difference analyses are applied on line-of-sight velocity and circular polarization maps and other averaged quantities. We find that several MHD modes at different frequencies are excited in all analysed structures. The leading sunspot shows a linear dependence of the phase lag on the angle between the magnetic field and the line of sight of the observer in its penumbra. The magnetic pore exhibits global resonances at several frequencies, which are also excited by different wave modes. The SO/PHI measurements clearly confirm the presence of magnetic and velocity oscillations that are compatible with one or more MHD wave modes in pores and a sunspot. Improvements in modelling are still necessary to interpret the relation between the fluctuations of different diagnostics.
Reconstruction of total solar irradiance variability as simultaneously apparent from Solar Orbiter and Solar Dynamics Observatory
2023
Solar irradiance variability has been monitored almost exclusively from the Earth's perspective. We present a method to combine the unprecedented observations of the photospheric magnetic field and continuum intensity from outside the Sun-Earth line, which is being recorded by the Polarimetric and Helioseismic Imager on board the Solar Orbiter mission (SO/PHI), with solar observations recorded from the Earth's perspective to examine the solar irradiance variability from both perspectives simultaneously. Taking SO/PHI magnetograms and continuum intensity images from the cruise phase of the Solar Orbiter mission and concurrent observations from the Helioseismic and Magnetic Imager onboard the Solar Dynamics Observatory (SDO/HMI) as input into the SATIRE-S model, we successfully reconstructed the total solar irradiance variability as apparent from both perspectives. In later stages of the SO mission, the orbital plane will tilt in such a way as to bring the spacecraft away from the ecliptic to heliographic latitudes of up to \\(33^\\). The current study sets the template for the reconstruction of solar irradiance variability as seen from outside the ecliptic from data that SO/PHI is expected to collect from such positions. Such a reconstruction will be beneficial to factoring inclination into how the brightness variations of the Sun compare to those of other cool stars, whose rotation axes are randomly inclined.
Intensity contrast of solar network and faculae close to the solar limb, observed from two vantage points
2023
The brightness of faculae and network depends on the angle at which they are observed and the magnetic flux density. Close to the limb, assessment of this relationship has until now been hindered by the increasingly lower signal in magnetograms. This preliminary study aims at highlighting the potential of using simultaneous observations from different vantage points to better determine the properties of faculae close to the limb. We use data from the Solar Orbiter/Polarimetric and Helioseismic Imager (SO/PHI), and the Solar Dynamics Observatory/Helioseismic and Magnetic Imager (SDO/HMI), recorded at \\(60^\\) angular separation of their lines of sight at the Sun. We use continuum intensity observed close to the limb by SO/PHI and complement it with the co-observed \\(B_ LOS\\) from SDO/HMI, originating closer to disc centre (as seen by SDO/HMI), thus avoiding the degradation of the magnetic field signal near the limb. We derived the dependence of facular brightness in the continuum on disc position and magnetic flux density from the combined observations of SO/PHI and SDO/HMI. Compared with a single point of view, we were able to obtain contrast values reaching closer to the limb and to lower field strengths. We find the general dependence of the limb distance at which the contrast is maximum on the flux density to be at large in line with single viewpoint observations, in that the higher the flux density is, the closer the turning point lies to the limb. There is a tendency, however, for the maximum to be reached closer to the limb when determined from two vantage points. We note that due to the preliminary nature of this study, these results must be taken with caution. Our analysis shows that studies involving two viewpoints can significantly improve the detection of faculae near the solar limb and the determination of their brightness contrast relative to the quiet Sun.
Stereoscopic disambiguation of vector magnetograms: first applications to SO/PHI-HRT data
2023
Spectropolarimetric reconstructions of the photospheric vector magnetic field are intrinsically limited by the 180\\(^\\)-ambiguity in the orientation of the transverse component. So far, the removal of such an ambiguity has required assumptions about the properties of the photospheric field, which makes disambiguation methods model-dependent. The basic idea is that the unambiguous line-of-sight component of the field measured from one vantage point will generally have a non-zero projection on the ambiguous transverse component measured by the second telescope, thereby determining the ``true'' orientation of the transverse field. Such an idea was developed and implemented in the Stereoscopic Disambiguation Method (SDM), which was recently tested using numerical simulations. In this work we present a first application of the SDM to data obtained by the High Resolution Telescope (HRT) onboard Solar Orbiter during the March 2022 campaign, when the angle with Earth was 27 degrees. The method is successfully applied to remove the ambiguity in the transverse component of the vector magnetogram solely using observations (from HRT and from the Helioseismic and Magnetic Imager), for the first time. The SDM is proven to provide observation-only disambiguated vector magnetograms that are spatially homogeneous and consistent. A discussion about the sources of error that may limit the accuracy of the method, and of the strategies to remove them in future applications, is also presented.
Wavefront error of PHI/HRT on Solar Orbiter at various heliocentric distances
by
D Orozco Su\' arez
,
I P\' erez-Grande
,
Alvarez-Herrero, A
in
Aberration
,
Error analysis
,
Image quality
2023
We use wavefront sensing to characterise the image quality of the the High Resolution Telescope (HRT) of the Polarimetric and Helioseismic Imager (SO/PHI) data products during the second remote sensing window of the Solar Orbiter (SO) nominal mission phase. Our ultimate aims are to reconstruct the HRT data by deconvolving with the HRT point spread function (PSF) and to correct for the effects of optical aberrations on the data. We use a pair of focused--defocused images to compute the wavefront error and derive the PSF of HRT by means of a phase diversity (PD) analysis. The wavefront error of HRT depends on the orbital distance of SO to the Sun. At distances \\(>0.5\\)\\,au, the wavefront error is small, and stems dominantly from the inherent optical properties of HRT. At distances \\(<0.5\\)\\,au, the thermo-optical effect of the Heat Rejection Entrance Window (HREW) becomes noticeable. We develop an interpolation scheme for the wavefront error that depends on the thermal variation of the HREW with the distance of SO to the Sun. We also introduce a new level of image reconstruction, termed `aberration correction', which is designed to reduce the noise caused by image deconvolution while removing the aberrations caused by the HREW. The computed PSF via phase diversity significantly reduces the degradation caused by the HREW in the near-perihelion HRT data. In addition, the aberration correction increases the noise by a factor of only \\(1.45\\) compared to the factor of \\(3\\) increase that results from the usual PD reconstructions.