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LHC Scrubbing Run 1 Day 3 (27/06/2015) Scrubbing team 28/06/2015.

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Presentation on theme: "LHC Scrubbing Run 1 Day 3 (27/06/2015) Scrubbing team 28/06/2015."— Presentation transcript:

1 LHC Scrubbing Run 1 Day 3 (27/06/2015) Scrubbing team 28/06/2015

2 Overview LHC 8:30 meeting2 Fill 3911: 372 b. in both beams 24 bunches per injection

3 Overview LHC 8:30 meeting3 Fill 3912: 24 bunches per injection Lost sector 23 (5h stop)

4 Overview LHC 8:30 meeting4 Fill 3914 372b. in B1 588b. in B2 Tested injections of 36b.  OK Tested injections of 48b.  dumped by injection losses  increased scraping at SPS

5 Overview LHC 8:30 meeting5 Fill 3914 372b. in B1 588b. in B2 Tested injections of 36b.  OK Tested injections of 48b.  dumped by injection losses  increased scraping at SPS

6 Overview LHC 8:30 meeting6 Fill 3915 Test with 48b. per injection  Unstable in both planes Roll back to 36b. per injection

7 LHC 8:30 meeting7

8 Overview LHC 8:30 meeting8 Fill 3416 36b. per injection Dumped B1 soon after first injections of B2, interlocked BPM

9 Overview LHC 8:30 meeting9 Fill 3417 Test with 48b. @0.9e11 Stability does not improve

10 Overview LHC 8:30 meeting10 Fill 3418-19-20-21-22 36b. per injection Reached up to ~200-300b Mainly dumped by V instability but anyway strong beam degradation when kept

11 Overview LHC 8:30 meeting11 Fill 3425 Injected 228b. in B1, 210b. in B2 Kept in the machine in spite of the decreasing heat load due to PS extraction problem

12 Overview LHC 8:30 meeting12 Fill 3425 Injected 228b. in B1, 210b. in B2 Kept in the machine in spite of the decreasing heat load due to PS extraction problem

13 Overview LHC 8:30 meeting13

14 Both MKIs condition well 25ns Start lower: NEG coating in Cu tube

15 Comparison with 2012 after MKI exchange during TS 25ns Start lower: NEG coating in Cu tube Start lower: NEG coating in Cu tube 25ns After MKI8D exchange 2012

16 Summary o Continued scrubbing with 25 ns beams o Operation with 25 ns still looks very challenging at this stage For trains of 24b+ instabilities right after injection are observed and often lead to beam dumps for trains of 36b+ (even with extremely high Q’) When enough beam is stored, strong heat load is observed in the arcs Very poor lifetime  can be improved by trimming down chroma at store o Scrubbing evolution is observable but the pace is quite slow Slower than in 2011-12  much more difficult to keep long trains in the LHC o To speed up the process, a better control of the instability is desirable Any optimization possible on ADT side? o Possible next steps: Accumulate more beam dose with 25 ns before switching back tomorrow to 50 ns to complete the intensity ramp up (benefiting from the 48h scrubbing with 25 ns) LHC 8:30 meeting16


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