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+ | ===== Technical Aspects of the S800 ===== | ||
- | | + | |
- | | + | * Stations |
+ | * Magnets | ||
+ | * Modes of Operation | ||
+ | | ||
+ | * Detectors | ||
+ | * Electronics | ||
+ | * Software | ||
+ | * Data Acquisition | ||
+ | * Coupled Detectors/ | ||
+ | * Types of Experiments | ||
+ | ===== Operation of the S800 ===== | ||
- | ====== Technical Aspects of the S800 ====== | ||
- | ===== Technical | + | ===== Introduction ===== |
- | + | The S800 [1] is a superconducting spectrograph used for reaction studies with high-energy radioactive beams produced at the NSCL Coupled-Cyclotron Facility (CCF) and the A1900 Separator [2]. It was designed for high-precision measurements of scattering angles (ΔΘ=2 msr) and momentum (p/ | |
- | ==== General | + | |
- | The [[S800]] [1] is a superconducting spectrograph used for reaction studies with high-energy radioactive beams produced at the NSCL Coupled-Cyclotron Facility (CCF) and the A1900 Separator [2]. It was designed for high-precision measurements of scattering angles (ΔΘ=2 msr) and momentum (p/ | + | |
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{{: | {{: | ||
- | === Analysis Line === | + | ==== Analysis Line ==== |
The analysis line extends from the object position to the target station, with a total length of 22 m. It includes four 22.5° dipoles, five quadrupole triplets, and two vertically steering magnets, assembled in two segments with configurations QQQ-H-DD-QQQ (segment 6) and QQQ-DD-H-QQQ-QQQ (segment 7) symmetrically oriented around an intermediate image plane. The maximum rigidity is 5 Tm, although it depends on the tune of the quadrupoles. The acceptances of the analysis line depends on the optical mode. | The analysis line extends from the object position to the target station, with a total length of 22 m. It includes four 22.5° dipoles, five quadrupole triplets, and two vertically steering magnets, assembled in two segments with configurations QQQ-H-DD-QQQ (segment 6) and QQQ-DD-H-QQQ-QQQ (segment 7) symmetrically oriented around an intermediate image plane. The maximum rigidity is 5 Tm, although it depends on the tune of the quadrupoles. The acceptances of the analysis line depends on the optical mode. | ||
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- | === Spectrograph === | + | ==== Spectrograph |
The spectrograph consist of two quadrupoles, | The spectrograph consist of two quadrupoles, | ||
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^ Detector Position Resolution (x)| 0.3 mm | | ^ Detector Position Resolution (x)| 0.3 mm | | ||
^ Detector Position Resolution (y)| 0.3 mm | | ^ Detector Position Resolution (y)| 0.3 mm | | ||
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