Calculation of proton spin-dependent structure functions in quark models
Spin-dependent structure functions [ital g][sub 1][sup [ital p]]([ital x]) and [ital g][sub 2][sup [ital p]]([ital x]) of the proton are calculated in the MIT bag model and in the color-dielectric model using the method of Signal and co-workers. Decomposition of [ital g][sub 2] into the twist-two an...
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Veröffentlicht in: | Physical review. D, Particles and fields Particles and fields, 1993-04, Vol.47 (7), p.3045-3048 |
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Sprache: | eng |
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Zusammenfassung: | Spin-dependent structure functions [ital g][sub 1][sup [ital p]]([ital x]) and [ital g][sub 2][sup [ital p]]([ital x]) of the proton are calculated in the MIT bag model and in the color-dielectric model using the method of Signal and co-workers. Decomposition of [ital g][sub 2] into the twist-two and -three parts, according to Jaffe, has also been done. While characteristics of the quark wave functions in these models are clearly seen in the [ital x] dependence of [ital g][sub 1][sup [ital p]]([ital x]), the transverse part [ital g][sub 2][sup [ital p]]([ital x]) is rather insensitive to the models. By selecting out the twist-three part of [ital g][sub 2][sup [ital p]]([ital x]), however, the model dependence becomes evident. The color-dielectric model predicts quark distributions which are closer to the nonrelativistic quark model when compared with the MIT bag model. |
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ISSN: | 0556-2821 1089-4918 |
DOI: | 10.1103/PhysRevD.47.3045 |