Skip to main content
Log in

Dual absorptive model and π±p elastic scattering up to 280 GeV/celastic scattering up to 280 GeV/c

Дуальная абсорбционная модель и π±p упругое рассеяние при импульсах вплоть до 280 ГэВ/cупругое рассеяние при импульсах вплоть до 280 ГэВ/c

  • Published:
Il Nuovo Cimento A (1965-1970)

Summary

π±p total and near-forward elastic differential cross-sections as well as near-forward elastic polarizations up to the highest energies at which data are available are explained on the basis of Harari's dual absorptive model. The |t| range considered is |t|≲1 (GeV/c)2.

Riassunto

Si spiegano le sezioni d'urto differenziali elastiche totali e quasi in avanti di π±p cosi come le polarizzazioni elastiche quasi in avanti fino alle energie più alte disponibili sulla base del modello duale di assorbimento di Harari. L'intervallo di |t| che si considera è |t|≲1 (GeV/c)2.

Резюме

На основе дуальной абсорбционной модели Харари обьясняются π±p полное сечение и упругое дифференциальное сечение вблизи направления вперед, а также упругие поляризации вблизи направления вперед в области высоких энергий, для которых имеются экспериментальные данные. Рассматривается областя |t|≲1 (ГэВ/с)2.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

Footnotes

  1. H. Harari: Stanford Linear Accelerator Centre preprint, SLAC-PUB-837 (December 1970).

  2. H. Harari:Ann. of Phys.,63, 432 (1971).

    Article  ADS  Google Scholar 

  3. H. Harari: inProceedings of the International Conference on Duality and Symmetry in Hadron Physics, edited byE. Gotsman (Rehovot, 1971), p. 148.

  4. H. Harari:Phys. Rev. Lett.,26, 1400 (1971).

    Article  ADS  Google Scholar 

  5. H. Harari andA. Schwimmer:Phys. Rev. D,11, 3 (1972).

    Google Scholar 

  6. M. Davier andH. Harari:Phys. Lett.,35 B, 239 (1971).

    Article  ADS  Google Scholar 

  7. M. Davier:Phys. Lett.,40 B, 369 (1972).

    Article  ADS  Google Scholar 

  8. S. Minami:Lett. Nuovo Cimento,5, 490 (1972).

    Article  Google Scholar 

  9. V. Barger andF. Halzen:Nucl. Phys.,43 B, 62 (1972).

    Article  ADS  Google Scholar 

  10. A. Savoy Navarro:Lett. Nuovo Cimento,9, 619 (1974).

    Article  Google Scholar 

  11. M. Saleem, M. Rafique, K. L. Mir andS. H. Tirmazi:Aust. Journ. Phys.,28, 365 (1975).

    Article  ADS  Google Scholar 

  12. M. Kamran andM. Saleem:Aust. Journ., Phys.,30, 355 (1977).

    Article  ADS  Google Scholar 

  13. J. S. Loos andJ. A. J. Mathews:Phys. Rev. D,6, 2463 (1972).

    Article  ADS  Google Scholar 

  14. G. Chadwick, Y. Eisenberg andE. Kogan:Phys. Rev. D,8, 1607 (1973).

    Article  ADS  Google Scholar 

  15. T. M. Aye:Nucl. Phys.,47 B, 355 (1972).

    Article  ADS  Google Scholar 

  16. R. Gonczi:Lett. Nuovo Cimento,7, 21 (1973).

    Article  Google Scholar 

  17. M. Saleem, G. Rasul andJ. Irshad:Aust. Journ. Phys.,29, 227 (1976).

    Article  ADS  Google Scholar 

  18. P. D. B. Collins, F. D. Gault andA. Martin:Nucl. Phys.,80 B, 135 (1974).

    Article  ADS  Google Scholar 

  19. D. W. Joynson andB. R. Martin: University College of London preprint (November 1977).

  20. A. Bouquet andB. Diu:Nuovo Cimento,29 A, 373 (1978).

    ADS  Google Scholar 

  21. H. Navelet andP. R. Stevens:Nucl. Phys.,118 B, 475 (1977).

    Article  ADS  Google Scholar 

  22. A. S. Carrol, I. H. Chiang T. F. Kycia, K. K. Li, P. O. Mazur, P. M. Mockett, D. C. Rahm, W. F. Baker, D. P. Eartly, G. Giacomelli, P. F. M. Koehler, K. P. Pretzel, R. Rubinstein, A. A. Wehmann, R. L. Cool andO. Fackler:Phys. Lett.,61 B, 303 (1976).

    Article  ADS  Google Scholar 

  23. K. J. Foley, R. S. Jones, S. J. Lindenbaum, W. A. Love, S. Ozaki, E. D. Platner, C. A. Quarles andE. H. Willen:Phys. Rev. Lett.,19, 330 (1963).

    Article  ADS  Google Scholar 

  24. R. W. Akerloff, R. Kotthaus, R. L. Loveless, D. I. Meyer, I. Ambats, W. T. Meyer, C. E. W. Ward, D. P. Eartly, R. A. Lundy, S. M. Pruss, D. D. Yovanovitch andD. R. Rust:Phys. Rev. D,14, 2864 (1976).

    Article  ADS  Google Scholar 

  25. D. S. Ayres, R. Diebold, G. J. Maclay, D. Cutts, R. E. Lanou jr.,L. J. Levinson, J. T. Massimo, J. Litt, R. Meunier, M. Sogard, B. Gittelman, E. C. Loh, A. E. Brenner, J. E. Elias, G. Mikenkerg, L. Guerriero, P. Lavopa, G. Maggi, C. De Marzo, F. Posa, G. Selvaggi, P. Spinelli, F. Waldner, D. S. Barton, J. Butler, J. Fines, J. Friedman, M. W. Kendall, B. Nelson, L. Rosenson, R. Verdier andB. Gottschalk:Phys. Rev. D,15, 3105 (1977).

    Article  ADS  Google Scholar 

  26. C. Bruneton, J. Bystricky, G. Cozzika, J. Deregel, A. Dererschiko, Y. Ducros, A. Gaidot, M. Yu. Kazarinov, V. P. Kanarets, F. Khantine-Langlois, B. Khatchaturov, F. Lehar, A. de Lesquen, Yu. Matulenko, J. P. Merlo, A. P. Maschanin, S. Miyashita, J. Morchet, S. B. Nurushev, J. Pierrard, I. Pstashnikova, J. C. Raoul, L. Van Rossum, A. Saraykin, V. Siskin, E. Smirnov, V. Solovyanov andJ. Strachota:Nucl. Phys.,124 B, 391 (1977).

    Article  ADS  Google Scholar 

  27. D. Harting, P. Blackall, B. Elsner, A. C. Helmholz, W. C. Middelkoop, B. Powell, B. Zacharov, P. Zanella, P. Dalpiaz, M. N. Focacci, S. Focardi, G. Giacomelli, L. Monari, J. A. Beaney, R. A. Donald, P. Mason, L. W. Jones andD. O. Caldwell:Nuovo Cimento,38, 60 (1965).

    Article  Google Scholar 

  28. K. J. Foley, S. J. Lindenbaum, W. A. Love, S. Ozaki, J. J. Russell andL. C. L. Yuan:Phys. Rev. Lett.,11, 425 (1963).

    Article  ADS  Google Scholar 

  29. M. Borghini, L. Dick, J. C. Oliver, H. Aoi, D. Cronenborger, C. Gregoire, Z. Janout, K. Kuroda, A. Michalowicz, M. Poulet, D. Sillou, G. Bellettini, P. L. Braccini, J. Del Prete, L. Foa, P. Laurelli, G. Sangionetti andM. Valdata (CERN-Orsay-Pisa Collaboration):Phys. Lett.,36 B, 493 (1971).

    Article  ADS  Google Scholar 

  30. A. Goidot, C. Bruneton, J. Bystricky, G. Cozzika, J. Deregel, A. Derevchikov, Y. Ducross, Yu. M. Kazarinov, M. Yu. Kazarinov, V. P. Komarets, F. Khantine-Langlois, B. Khatchaturov, F. Lehar, S. Miyashita, J. Morchet, S. B. Nurushev, V. Pierrard, I. Potashnikova, J. C. Raoul, L. Van Rossum, A. Saraykin, V. Siskin, E. Smirnov, V. Solovyomor andJ. Strakhoba (Saclay-Serpukhov-Dubna-Moscow Collaboration):Phys. Lett.,57 B, 389 (1975).

    Article  ADS  Google Scholar 

  31. I. P. Auer, D. Hill, B. Sandler, A. Yokosawa, W. Brückner, O. Chamberlain, H. Steiner, G. Shapiro, A. Jonckheere, P. F. M. Koehler, R. V. Kline, M. E. Law, F. M. Pipkin, W. Johson, J. Snyder andM. E. Zeller (ANL-LBL-FNAL-Suffolk-Yale Collaboration):Phys. Lett.,39 B, 313 (1977).

    Article  Google Scholar 

  32. Y. M. Antipov, G. Ascoli, R. Busnello, A. Weitsch, G. Damgaard, F. A. Ech, M. N. Kienzle Focacci, W. Kienzle, R. Klanner, R. G. Landsberg, A. A. Lebedev, C. Lechanoine, P. Lecomte, M. Martin, V. Roinsihvilli andP. D. Sard (IHEP-CERN Collaboration):Sov. Journ. Nucl. Phys.,18, 182 (1974).

    Google Scholar 

  33. R. E. Hendrick andB. Lautrup:Phys. Rev. D,11, 529 (1975), and references cited therein.

    Article  ADS  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Additional information

Traduzione a cura della Redazione.

Переведено редакцией.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Kamran, M. Dual absorptive model and π±p elastic scattering up to 280 GeV/celastic scattering up to 280 GeV/c. Nuov Cim A 51, 43–62 (1979). https://doi.org/10.1007/BF02822324

Download citation

  • Received:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF02822324

Navigation