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English: Four Filter Fusion


This stellar whirlpool is a spiral galaxy named NGC 7329, which has been imaged by Hubble’s Wide Field Camera 3 (WFC3). Creating a colourful image such as this one using a telescope such as Hubble is not as straightforward as pointing and clicking a camera. Commercial cameras will typically try to collect as much light of all visible wavelengths as they can, in order to create the most vibrant images possible. In contrast, raw images collected by Hubble are always monochromatic, because astronomers typically want to capture very specific ranges of wavelengths of light at any time, in order to do the best, most accurate science possible. In order to control which wavelengths of light will be collected, Hubble’s cameras are equipped with a wide variety of filters, which only allow certain wavelengths of light to reach the cameras’ CCDs (a CCD is a camera’s light sensor — phone cameras also have CCDs!).

How are the colourful Hubble images possible given that the raw Hubble images are monochromatic? This is accomplished by combining multiple different observations of the same object, obtained using different filters. This image, for example, was processed from Hubble observations made using four different filters, each of which spans a different region of the light spectrum, from the ultraviolet to optical and infrared. Specialised image processors and artists can make informed judgements about which optical colours best correspond to each filter used. They can then colour the images taken using that filter accordingly. Finally, the images taken with different filters are stacked together, and voila! The colourful image of a distant galaxy is complete, with colours as representative of reality as possible.

Credit:

ESA/Hubble & NASA, A. Riess et al.

Coordinates
Position (RA):  	22 40 24.39
Position (Dec): 	-66° 28' 47.48"
Field of view:  	2.37 x 2.29 arcminutes
Orientation:   	North is 22.7° left of vertical

Colours & filters Band	Wavelength	Telescope
Optical Long pass  	350 nm   	Hubble Space Telescope WFC3
Optical V      	555 nm   	Hubble Space Telescope WFC3
Optical I      	814 nm   	Hubble Space Telescope WFC3
Infrared H      	1.6 μm   	Hubble Space Telescope WFC3
Optical Long pass 	350 nm   	Hubble Space Telescope WFC3
.
Терахь 6 December 2021, 06:00 (released)
Хьост https://esahubble.org/images/potw2149a/
Автор

Credit:

ESA/Hubble & NASA, A. Riess et al.

Лицензи

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ESA/Hubble images, videos and web texts are released by the ESA under the Creative Commons Attribution 4.0 International license and may on a non-exclusive basis be reproduced without fee provided they are clearly and visibly credited. Detailed conditions are below; see the ESA copyright statement for full information. For images created by NASA or on the hubblesite.org website, or for ESA/Hubble images on the esahubble.org site before 2009, use the {{PD-Hubble}} tag.
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ХӀара файл лело йиш йу Creative Commons Attribution 4.0 International лицензица.
Авторан цӀе дӀайазйар: ESA/Hubble & NASA, J. Dalcanton; Acknowledgement: J. Schmidt
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карара2021, 6 декабрь, 18:32Жимо верси 2021, 6 декабрь, 18:323582 × 3469 (3,32 Мб)Fabian RRRR== {{int:filedesc}} == {{Information |description={{en|1=''Four Filter Fusion This stellar whirlpool is a spiral galaxy named NGC 7329, which has been imaged by Hubble’s Wide Field Camera 3 (WFC3). Creating a colourful image such as this one using a telescope such as Hubble is not as straightforward as pointing and clicking a camera. Commercial cameras will typically try to collect as much light of all visible wavelengths as they can, in order to create the most vibrant images possible. In...

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