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Heavy quark 1/m Q expansion of meson weak decay form factors in the relativistic quark model

  • Theoretical Physics
  • Published:
Zeitschrift für Physik C Particles and Fields

Abstract

The method of systematical expansion in the inverse powers of the heavy quark masses of the weak current matrix elements between heavy meson states is developed in the framework of the relativistic quark model based on the quasipotential approach in quantum field theory. The comparison of the first and second order terms of this expansion with the structure predicted by the heavy quark effective theory imposes strong constraints on the form of the long-range confining potential of quark-antiquark interaction. It is found that the confinig\(q\bar q\) potential is effectively vector, while scalar potential is anticonfining and helps to reproduce the correct nonrelativistic limit. At large distances quarks have nonperturbative anomalous chromomagnetic moments. The obtained values of the potential parameters are in accord with the ones found in our previous consideration of meson masses and decay rates. We calculate the Isgur-Wise function. The first and the second order form factors within 1/m Q expansion.

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References

  1. N. Isgur, M. Wise: Phys. Lett. B232 (1989) 113; Phys. Lett. B237 (1990) 527

    Google Scholar 

  2. M.B. Voloshin, M.A. Shifman: Yad. Fiz. 45 (1987) 463; Yad. Fiz. 47 (1988) 801

    Google Scholar 

  3. H. Georgi: Phys. Lett. B240 (1990) 447: E. Eichten. B. Hill: Phys. Lett. B234 (1990) 511

    Google Scholar 

  4. J.G. Körner, P. Kroll: Phys. Lett. B293 (1992) 201; J.G. Körner, G. Thompson: Phys. Lett. B264 (1991) 185

    Google Scholar 

  5. T. Mannel, W. Roberts, Z. Ryzak: Nucl. Phys. B368 (1992) 204; A.G. Grozin: Novosibirsk preprint BUDKERINP 92-97 (1992)

    Google Scholar 

  6. M. Neubert: SLAC preprint SLAC-PUB-6263 (1993)

  7. M.E. Luke: Phys. Lett. B252 (1990) 447

    Google Scholar 

  8. V.O. Galkin, A.Yu. Mishurov, R.N. Faustov: Yad. Fiz. 55 (1992) 2175

    Google Scholar 

  9. V.O. Galkin, R.N. Faustov: Yad. Fiz. 44 (1986) 1575; V.O. Galkin, A.Yu. Mishurov, R.N. Faustov: Yad. Fiz. 51 (1990) 1101

    Google Scholar 

  10. V.O. Galkin, A.Yu. Mishurov, R.N. Faustov: Yad. Fiz. 53 (1991) 1676

    Google Scholar 

  11. V.O. Galkin, A.Yu. Mishurov, R.N. Faustov: Yad. Fiz. 55 (1992) 1080

    Google Scholar 

  12. R.N. Faustov, V.O. Galkin, A.Yu. Mishurov: Proc. Seventh Int. Seminar “Quarks '92”, ed. D. Yu. Grigoriev et al.: Singapore: World Scientific 1993, p. 326

    Google Scholar 

  13. R.N. Faustov, V.O. Galkin: Mod. Phys. Lett. A7 (1992) 2111

    Google Scholar 

  14. A.F. Falk, M. Neubert: Phys. Rev. D47 (1993) 2965

    Google Scholar 

  15. P. Ball, V.M. Braun: München preprint TUM-T31-42/93 (1993)

  16. M. Neubert: Phys. Rev. D46 (1992) 1076

    Google Scholar 

  17. M. Neubert: CERN preprint CERN-TH. 7070/93 (1993)

  18. A.A. Logunov, A.N. Tavkhelidze: Nuovo Cimento 29 (1963) 380

    Google Scholar 

  19. A.P. Martynenko, R.N. Faustov: Teor. Mat. Fiz. 64 (1985) 179

    Google Scholar 

  20. R.N. Faustov: Ann. Phys. 78 (1973) 176; Nuovo Cimento 69 (1970) 37

    Google Scholar 

  21. V.O. Galkin, R.N. Faustov: Teor. Mat. Fiz. 85 (1990) 155

    Google Scholar 

  22. M. Wirbel, B. Stech, M. Bauer: Z. Phys. C29 (1992) 637

    Google Scholar 

  23. M. Neubert, V. Rieckert: Nucl. Phys. B382 (1992) 97

    Google Scholar 

  24. N. Isgur, D. Scora, B. Grinstein, M.B. Wise: Phys. Rev. D39 (1989) 799

    Google Scholar 

  25. J.G. Körner, G.A. Schuler: Z. Phys. C38 (1988) 511: Z. Phys. C46 (1990) 93

    Google Scholar 

  26. J.D. Bjorken: Results and Perspectives in Particle Physics, Proc. 4 Rencontres de Physique de la Valle d'Aoste, La Thuile, Italy, 1990. ed. M. Greco, Gif-sur-Yvette, France: Editions Frontieres 1990, p. 583; SLAC preprint SLAC-PUB-5278 (1990)

    Google Scholar 

  27. E. Bagan, P. Ball, P. Gosdzinsky: Phys. Lett. B301 (1993) 101

    Google Scholar 

  28. M. Neubert: Phys. Rev. D45 (1992) 2451: Phys. Rev. D47 (1993) 4063

    Google Scholar 

  29. S. Narison: CERN preprint CERN-TH. 7103/93 (1994)

  30. F.E. Close, z. Li: Phys. Lett. B289 (1992) 143

    Google Scholar 

  31. M. Neubert: Phys. Rev. D46 (1992) 1076

    Google Scholar 

  32. M. Neubert, Z. Ligeti, Y. Nir: Phys. Lett. B301 (1993) 101; SLAC preprint SLAC-PUB-6017 (1992)

    Google Scholar 

  33. M. Neubert: Phys. Lett. B 264 (1991) 455

    Google Scholar 

  34. T. Mannel: CERN preprint CERN-TH. 7162/94 (1994)

  35. M. Shifman, N.G. Uraltsev, A. Vainshtein: Minnesota preprint TPI-MINN-94/13-T (1994)

  36. T. Mannel, M. Neubert: CERN preprint CERN-TH. 7156/94 (1994)

  37. I.I. Bigi, M.A. Shifman, N.G. Uraltsev, A.I. Vainshtein: CERN preprint CERN-TH. 7171/94 (1994)

  38. Z. Ligeti, Y. Nir: Phys. Rev. D49 (1994) R4331

    Google Scholar 

  39. M. Neubert: Phys. Lett. B322 (1994) 419

    Google Scholar 

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Faustov, R.N., Galkin, V.O. Heavy quark 1/m Q expansion of meson weak decay form factors in the relativistic quark model. Z. Phys. C - Particles and Fields 66, 119–127 (1995). https://doi.org/10.1007/BF01496586

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  • DOI: https://doi.org/10.1007/BF01496586

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