1 / 59

HMPID weekly meeting

HMPID weekly meeting. Performance study. G. Volpe, Shivani Bansal. 09/07/2013. Data statistics. Analyzed periods : 10b, 10c, 10d , 10h, 11a, 11b , 11c, 11d, 11e, 11f, 11h, 12a, 12b, 12c,12d, 12e ,12f, 12g . ( very low statistic ) 10b, 10c, 11c, 11d, 11f : p-p 7 TeV

michi
Télécharger la présentation

HMPID weekly meeting

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. HMPID weekly meeting Performance study G. Volpe, ShivaniBansal 09/07/2013

  2. Data statistics Analyzed periods : 10b, 10c, 10d, 10h, 11a, 11b, 11c, 11d, 11e, 11f, 11h, 12a, 12b, 12c,12d,12e,12f,12g. (very low statistic) 10b, 10c, 11c, 11d, 11f : p-p 7 TeV 10h, 11h: Pb-Pb 2.76 ATeV 11a: p-p 2.76 TeV 12a, 12b , 12c, 12d, 12e, 12f, 12g: p-p 8 TeV What has been studied: • Photon Cluster Charge Distribution and gain (A0) per HV sector • Number of Photons vssin2(qckov) per photocatode. • Number of photons has been normalized for gain. • Number of Pads vs sin2(qckov) per photocatode. (statistics not enough) Tracks selection: • primary tracks selected using standard cuts; • for the number of photons study full accepted rings have been used, applying a cut on the corresponding track position.

  3. RICH 0: Gain

  4. RICH 0: Numberofphotons

  5. RICH 1: Gain

  6. RICH 1: Numberofphotons

  7. RICH 2: Gain

  8. RICH 2: Numberofphotons

  9. RICH 3: Gain

  10. RICH 3: Numberofphotons

  11. RICH 4: Gain

  12. RICH 4: Numberofphotons

  13. RICH 5: Gain

  14. RICH 5: Numberofphotons

  15. RICH 6: Gain

  16. RICH 6: Numberofphotons

  17. Number of photons for LHC 10b * We have used a strip of 10 cm in the y-direction * p>3Gev

  18. Number of photons for LHC 10b *We have used a strip of 10 cm in the y-direction * p>4Gev

  19. Number of photons for LHC 10b * We have used a strip of 5 cm in the y-direction * p>3Gev

  20. Number of photons for LHC 10b * We have used a strip of 5 cm in the y-direction * p>4Gev

  21. Fully accepted photon rings: Track 0

  22. Fully accepted photon rings: Track1

  23. Fully accepted photon rings: Track2

  24. Fully accepted photon rings: Track3

  25. Fully accepted photon rings: Track4

  26. Fully accepted photon rings: Track5

  27. Fully accepted photon rings: Track6

  28. Fully accepted photon rings: Track7

  29. Fully accepted photon rings: Track8

  30. Fully accepted photon rings: Track9

  31. Fully accepted photon rings: Track10

  32. Fully accepted photon rings: Track11

  33. Fully accepted photon rings: Track12

  34. Fully accepted photon rings: Track13

  35. Fully accepted photon rings: Track14

  36. Fully accepted photon rings: Track15

  37. Fully accepted photon rings: Track16

  38. Fully accepted photon rings: Track17

  39. Fully accepted photon rings: Track18

  40. Fully accepted photon rings: Track19

  41. Fully accepted photon rings: Track20

  42. Fully accepted photon rings: Track21

  43. Fully accepted photon rings: Track22

  44. Fully accepted photon rings: Track23

  45. Fully accepted photon rings: Track24

  46. Fully accepted photon rings: Track25

  47. Fully accepted photon rings: Track26

  48. Fully accepted photon rings: Track27

  49. Fully accepted photon rings: Track28

  50. Fully accepted photon rings: Track29

More Related