Potsdam Great Refractor (Große Refraktor) is an historic astronomical telescope in an observatory in Potsdam, Brandenburg, Germany. Completed in 1899, it is a double telescope for astronomy; a great refractor with two objectives of different size on the same equatorial mount. One lens in 80 cm in aperture and the other is 50 cm. The 80 cm diameter lens was designed for astrophotography, and the 50 cm diameter lens for visual work. The telescope was made by A. Repsold. The objective lens glass blanks were made in Jena by Schott. The lenses were figured by C.A. Steinheil of Munich.
History
An observatory had been established in the late 1870s near Potsdam, and had gained notice for its work on photographic spectroscopy of stars. A new telescope was acquired by 1899, to continue this work and by 1904 the interstellar medium was discovered spectroscopically. The telescope mostly survived to the 21st century with an archive of photographic plates, and is a popular tourist destination in the modern day after the site was restored. With this type of telescope, the dome opening must move in synchrony with the telescope or the view would be blocked; in addition the floor inside the dome also moves to keep the astronomer aligned with viewing end of the telescope.
Background & Development The observatory institution the Astrophysical Observatory Potsdam (AOP) was founded in 1878. The observatory started off with various instruments including a 30 cm (~11.8 in.) refractor by Schroeder and a 20 cm (8 in) from Grubb Telescope Company. A larger double telescope with a combination of visual and astrographic refractors was installed in 1889. This had an aperture of 32 cm for photography, and a smaller 24 cm for visual work. This telescope was used in support of the Carte du Ciel, international astronomical project. Other projects of the observatory include solar observations, spectroscopy, and a stellar luminosity catalog with many stars from the Bonner Durchmusterung (BD) . In the mid-1800s the principle of Doppler frequency shifting was discovered, and the next step was to apply this to changes in frequency of light, and further enhancement was achieved with photographic spectroscopy. The 30 cm Schrodeder telescope was used to take the spectrum of stars photographically, and the observatory became known for its work on stellar spectrographs. By 1892, they published a list of 52 photographic-based radial velocities from spectroscopy. However, with this they ran out of stars that could be observed with photographic spectroscopy using the 30 cm (12 inch) Schroder. A bigger telescope would be needed to expand this area of study. Major discoveries that the observatory was recognized for, were determining that Spica was spectroscopic binary in 1878, and also breakthrough on understanding of Algol.
.. Therefore when the spectrographic method shall have been thoroughly applied with great modern telescopes, we may confidently look forward to an enormous expansion of our knowledge of motions in the stellar universe Also, while the newer 32 cm astrograph was felt to be adequate for photography, the director of the observatory was unhappy with its performance in spectroscopy. Thus planning for a larger instrument, and a building to house it was undertaken in the 1890s. In 1895 a new instrument for the observatory was approved.
Design & Construction
The overall telescope was built by Repsold. Repsold was a German optics company started by the astronomer Johann Georg Repsold, and made various optical instruments until 1919; they were based out of Hamburg. Both objectives were figured by Steinheil from glass blanks made by Schott. Steinheil was a German optics company founded by Carl August von Steinheil. The two objective lenses were completed by the firm Steinheil of Munich, figured from glass blanks made by Schott in Jena. The 50 cm was designed optical for the human visual range, and was intended as a guide for the photographic telescope. The visual 50 cm was regarded as satisfactory, although Bernhard Schmidt adjusted the lens figuring in 1911 and 1914. The 80 cm was found to have some chromatic errors and Astigmatism, that lead to some refiguring of the optics in following years, as well as development of a new optical test.
First light & Beyond
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