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For about three years, it was known that precision spectrophotometry with FORS2 suffered from systematic errors that made quantitative observations of planetary transits impossible. We identified the Longitudinal Atmospheric Dispersion…

ESO's two FOcal Reducer and low dispersion Spectrographs (FORS) are the primary optical imaging instruments for the VLT. They are not direct-imaging instruments, as there are several optical elements in the light path. In particular, both…

天体物理仪器与方法 · 物理学 2010-01-08 S. Moehler , W. Freudling , P. Moller , F. Patat , G. Rupprecht , K. O'Brien

Images taken with modern detectors require calibration via flat fielding to obtain the same flux scale across the whole image. One method for obtaining the best possible flat fielding accuracy is to derive a photometric model from dithered…

天体物理仪器与方法 · 物理学 2015-06-18 Lodovico Coccato , Daniel M. Bramich , Wolfram Freudling , Sabine Moehler

Transmission spectroscopy facilitates the detection of molecules and/or clouds in the atmospheres of exoplanets. Such studies rely heavily on space-based or large ground-based observatories, as one needs to perform time- resolved, high…

Atmospheric dispersion causes light from celestial objects with different wavelengths to refract at varying angles as it passes through Earth's atmosphere. This effect results in an elongated image at the focal plane of a telescope and…

In the past few years, the study of exoplanets has evolved from being pure discovery, then being more exploratory in nature and finally becoming very quantitative. In particular, transmission spectroscopy now allows the study of…

地球与行星天体物理 · 物理学 2015-04-15 E. Sedaghati , H. M. J. Boffin , Sz. Csizmadia , N. Gibson , P. Kabath , M. Mallonn , M. E. Van den Ancker

ESO's two FOcal Reducer and low dispersion Spectrographs (FORS) are the primary imaging cameras for the VLT. Since they are not direct-imaging cameras, the accuracy of photometry which can routinely be obtained is limited by significant sky…

天体物理学 · 物理学 2007-05-23 W. Freudling , M. Romaniello , F. Patat , P. Moller , E. Jehin , K. O'Brien

In ground based astronomical observations, atmospheric dispersion shifts the image of the object at different wavelengths due to the wavelength-dependent index of refraction of the atmosphere. Thus, using an Atmospheric Dispersion Corrector…

天体物理仪器与方法 · 物理学 2019-12-06 Bachar Wehbe , Alexandre Cabral , Gerardo Avila

Spectral computed tomography has received considerable interest in recent years since spectral measurements contain much richer information about the object of interest. In spectral computed tomography, we are interested in the energy…

During electro-optical testing of the camera for the upcoming Vera C. Rubin Observatory Legacy Survey of Space and Time, a unique low-signal pattern was found in differenced pairs of flat images used to create photon transfer curves, with…

天体物理仪器与方法 · 物理学 2024-11-21 John Banovetz , Yousuke Utsumi , Joshua Meyers , Maya Beleznay , Andrew Rasmussen , Aaron Roodman

The FORS2 instrument is one of the most widely used and productive instruments on the Very Large Telescope. This article reports on a project to improve the quality of the reduced FORS2 spectra that can be produced with the software…

天体物理仪器与方法 · 物理学 2015-04-23 Sabine Moehler , C. E. García Dabo , Henri Boffin , Gero Rupprecht , Ivo Saviane , Wolfram Freudling

The image quality from Ground-Layer Adaptive Optics (GLAO) can be gradually increased with decreased contiguous field of view. This trade-off is dependent on the vertical profile of the optical turbulence (Cn2 profiles). It is known that…

天体物理仪器与方法 · 物理学 2009-12-23 J. Stoesz , E. Masciadri , F. Lascaux , S. Hagelin

ESO is in the process of upgrading one of the two FORS (FOcal Reducer/low dispersion Spectrograph) instruments - a multi-mode (imaging, polarimetry, long-slit, and multi-object spectroscopy) optical instrument mounted on the Cassegrain…

Charge-transfer loss on the Wide Field Planetary Camera 2 (WFPC2) onboard the Hubble Space Telescope is a primary source of uncertainty in stellar photometry obtained with this camera. This effect, discovered shortly after the camera was…

天体物理仪器与方法 · 物理学 2015-05-13 Andrew E. Dolphin

Twilight/night sky images are often used for flat-fielding CCD images, but the brightness gradient in twilight/night sky causes problems of accurate flat-field correction in astronomical images for wide-field telescopes. Using data from the…

天体物理仪器与方法 · 物理学 2015-06-22 Peng Wei , Zhaohui Shang , Bin Ma , Cheng Zhao , Yi Hu , Qiang Liu

Homogeneity for highly asymmetric fields has been studied for a Siemens PRIMUS linear accelerator. The flattening filter has a radius smaller than the primary collimator one, creating inhomogeneities that affect large fields in areas far…

医学物理 · 物理学 2007-05-23 F. Cutanda , S. T. Vargas-Castrillon

In addition to the BLINC/MIRAC IR science instruments, the Magellan adaptive secondary AO system will have an EEV CCD47 that can be used both for visible AO science and as a wide-field acquisition camera. The effects of atmospheric…

天体物理仪器与方法 · 物理学 2010-10-08 Derek Kopon , Laird M. Close , Victor Gasho

The measurement of diffractively scattered protons in the ATLAS Forward Physics detector system placed 220 m away from the ATLAS interaction point is studied. A parameterisation of the scattered proton transport through the LHC magnet…

仪器与探测器 · 物理学 2009-12-17 R. Staszewski , J. Chwastowski

Research on photonics and metamaterials constantly challenges our intuitive understanding of the behaviour of light. In recent years we have seen negative refraction, focusing of light by a flat slab, a ``perfect'' prism, and an…

光学 · 物理学 2008-05-07 Neil V. Budko , Shreyas B. Raghunathan

An empirical method for correcting low-resolution astronomical spectra for second-order contamination is presented. The method was developed for correcting spectra obtained with grism #4 of the ALFOSC spectrograph at the Nordic Optical…

天体物理学 · 物理学 2009-11-13 V. Stanishev
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