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P. 1Mario Deile – Summary of Likely Running Scenarios ScenarioInelastic PileupLuminosity [cm  s  ]  * = 90 m with crossing angle  < 1 10 31 – 10.

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Presentation on theme: "P. 1Mario Deile – Summary of Likely Running Scenarios ScenarioInelastic PileupLuminosity [cm  s  ]  * = 90 m with crossing angle  < 1 10 31 – 10."— Presentation transcript:

1 p. 1Mario Deile – Summary of Likely Running Scenarios ScenarioInelastic PileupLuminosity [cm  s  ]  * = 90 m with crossing angle  < 1 10 31 – 10 32 (depending on bunch size) (0.86 – 8.6) pb  / d  * = 11 m  = 1 – 3 5 x 10 32 – 1 x 10 33 (43 – 86) pb  / d  * = 0.5 m 12 mini bunches  = 3.5 – 7.8 ~10 31 0.86 pb  / d = 86 pb  / 100d  * = 0.5 m all nom. bunches  = 20 – 40 ~10 34 0.86 fb  / d = 86 fb  / 100d

2 p. 2Mario Deile –  * = 90 m E = 6.5 TeV  = 100  rad  N = 2  m rad k = 1000 N  L [cm  s  ] 5 x 10 10 0.068.6 x 10 30 7 x 10 10 0.111.7 x 10 31 1 x 10 11 0.233.4 x 10 31 2 x 10 11 0.921.4 x 10 32

3 p. 3Mario Deile –  * = 11 m E = 6.5 TeV N  L [cm  s  ] 5 x 10 10 0.571.2 x 10 32 7 x 10 10 1.12.3 x 10 32 1.15 x 10 11 3.06.2 x 10 32  t = 50 ns k = 1380  full = 280  rad  N = 1.6  m rad  t = 25 ns k = 2760  full = 390  rad  N = 3.75  m rad N  L [cm  s  ] 5 x 10 10 0.241.0 x 10 32 7 x 10 10 0.482.0 x 10 32 1.15 x 10 11 1.35.3 x 10 32  t = 25 ns k = 2520  full = 310  rad  N = 1.9  m rad N  L [cm  s  ] 5 x 10 10 0.481.8 x 10 32 7 x 10 10 0.933.5 x 10 32 1.15 x 10 11 2.59.5 x 10 32

4 p. 4Mario Deile –  * = 0.5 m E = 6.5 TeV N  L k b [cm  s  ]L 12 b [cm  s  ] 1 x 10 10 0.316.5 x 10 31 5.7 x 10 29 2 x 10 10 1.32.6 x 10 32 2.3 x 10 30 5 x 10 10 7.81.6 x 10 33 1.4 x 10 31 7 x 10 10 153.2 x 10 33 2.8 x 10 31 1.15 x 10 11 418.6 x 10 33  t = 50 ns k = 1380  full = 280  rad  N = 1.6  m rad  t = 25 ns k = 2760  full = 390  rad  N = 3.75  m rad  t = 25 ns k = 2520  full = 310  rad  N = 1.9  m rad N  L k b [cm  s  ]L 12 b [cm  s  ] 1 x 10 10 0.145.8 x 10 31 2.5 x 10 29 2 x 10 10 0.572.3 x 10 32 1.0 x 10 30 5 x 10 10 3.51.5 x 10 33 6.5 x 10 30 7 x 10 10 6.92.9 x 10 33 1.3 x 10 31 1.15 x 10 11 197.7 x 10 33 N  L k b [cm  s  ]L 12 b [cm  s  ] 1 x 10 10 0.269.8 x 10 31 4.7 x 10 29 2 x 10 10 1.03.9 x 10 32 1.9 x 10 30 5 x 10 10 6.52.5 x 10 33 1.2 x 10 31 7 x 10 10 134.8 x 10 33 2.3 x 10 31 1.15 x 10 11 341.3 x 10 34


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