1 / 18

Study of  - production reaction π – p → ηn in the near-threshold region

Study of  - production reaction π – p → ηn in the near-threshold region. Dr.Bayadilov D., Meson Physics Laboratory, PNPI. Experiment object : Precision data on  – p  η n reaction DCS measurement. Contents:. Experiment and setup Neutral meson spectrometer characteristics

sutton
Télécharger la présentation

Study of  - production reaction π – p → ηn in the near-threshold region

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. Study of -production reaction π–p → ηnin the near-threshold region Dr.Bayadilov D., Meson Physics Laboratory, PNPI Experiment object:Precision data on  –pηn reactionDCS measurement Contents: • Experiment and setup • Neutral meson spectrometer characteristics • Experimental data processing • Experimental results and conclusion

  2. 1. PNPI synchrocyclotron -channel (Gatchina, Russia) • ΔP/P=1,5% (FWHM) • δP/P=±0,5%

  3. 2. Experimental setup at PNPI synchrocyclotron -channel (Gatchina, Russia)

  4. 3. Experimental setup scheme

  5. 4. Experimental setup

  6. 5. Neutral mesonspectrometer cell • Individual crystal size 6060300 mm3 (16Xo) • Photomultiplier type – FEU-97 ( 55 mm) • PM supply – special high voltage multiplier • Dynode signals are used in trigger logic

  7. 6. Individual crystal energy calibration a) Cosmic rays; b) Electrons

  8. 7. Neutral mesonspectrometer characteristics Energy:M  6% Angle:1m  1 Time: 10 nsec

  9. 8. Trigger D1 andD2 – the sum of dynode signals from central parts of each calorimeters

  10. 9. E2 vs. E1distribution for  – momentum 720 MeV/с

  11. 10. Monte Carlo simulation. E2 vs. E1distribution for  –momentum 720 MeV/с

  12. 11. DCS calculation Nη– number of produced and registratedη-mesons at solid angle2cosc.m.(cosc.m.=0.2), N-– number of ––mesons drop on target А – setup acceptance, Br – branching ratio of  decay Np–number of hydrogen nucleus per cm2 of the target

  13. 12. η-mesons counts and acceptance

  14. 13. DCS of  –pηnreaction in C.M.(preliminary)

  15. 14. Data fit with Legendre polynomial expansion

  16. 15. ai coefficient ratios

  17. Conclusion and outlook • Neutral meson spectrometer was designed and created in PNPI, it has good angle and energy resolution • Measurements of DCS of  –pηn reaction were made with high precision at three momenta 700 , 710 , 720 MeV/c • It is shown that at 700 MeV/c the DCS angular dependence is isotropic, indicating the S-wave character of the -production process • At higher momenta a significant D-wavecontribution has led to the anisotropic angular dependence resulting in bowl-like shape • Further improve our data with kinematical fit • Combined analysis of ηphotoproduction and π-production on protons will improve determination of coupling constants of D13(1520) and S11(1535) resonances • Adding our results to the world database and providing a new PWA solution

  18. Kinematic fit

More Related