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| technical:mtr2 [2026/06/30 08:54] – etienne | technical:mtr2 [2026/06/30 09:51] (current) – [MTR2 spectral resolution] etienne | ||
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| - | MTR2 spectrograph has an effective resolving power, R, of 300 000 to 400 000, mainly limited by the entrance | + | MTR2 spectrograph has an effective resolving power, R, in the range of 300 000 to 400 000, making it one of the most spectrally powerful instrument in astrophysics. |
| - | | + | |
| - | * @ 5250.0 Å (Fe I doublet) : | + | MTR2 can be setup either with a tunable slit of with a slitjaw mirrors with an effective |
| - | * @ 5875.7 Å : δλ = 25 mÅ (0.5" entrance slit)\\ | + | |
| - | * @ 6302.0 Å (Fe I doublet) : δλ= 27 mÅ (0.5" entrance slit) \\ | + | The following table present typical values of the MTR2 spectral resolution, δλ, for different |
| - | * @ 6562.8 Å (Hα) ; δλ = 30 mÅ (0.5" | + | |
| + | | | ^ Wavelength | ||
| + | | | ||
| + | | ::: | ||
| + | ^ MTR2 ^ | ||
| + | ^ entrance | ||
| + | ^ | ||
| More complete details on the formulas can be obtained in the MTR2 technical document [[this> | More complete details on the formulas can be obtained in the MTR2 technical document [[this> | ||
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| * manual setup of the spectral cameras at the SP2 output | * manual setup of the spectral cameras at the SP2 output | ||
| Data and formulae for the MTR2 can be found in the following document: \\ | Data and formulae for the MTR2 can be found in the following document: \\ | ||
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| ==== Spectrograph simulation tools ==== | ==== Spectrograph simulation tools ==== | ||
| These tools allow the observer to quick check the feasibility of a setup | These tools allow the observer to quick check the feasibility of a setup | ||
| - | * [[this> | + | * [[this> |
| - | * [[this> | + | * [[this> |
| Observers can also check the [[technical: | Observers can also check the [[technical: | ||