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Chapter Four. Part I: Nuclear forces in double inelastic scattering of polarized protons.



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Chapter Four. Part I: Nuclear forces in double inelastic scattering of polarized protons. // Moscow: Libmonster Russia (LIBMONSTER.RU). Updated: 23.06.2025 . URL: https://libmonster.ru/m/book/download/222/5842 (date of access: 09.06.2026 )

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Reasons for Reading

The lectures courses are intended for students studying experimental nuclear physics and engineering. These lectures could be used as a guide to understanding elements of quantum mechanics and nuclear physics. Such a guide, in the author’s opinion, can eliminate the existing gap in the available scientific literature.

Opening Paragraph

The unnatural-parity transitions in nuclei are primarily determined by the spin-dependent NN amplitudes. Consequently, the polarization observables in the (p,p) reactions turn out to be generally sensitive to the spin-orbit and the entire tensor components of the effective interaction NN. The observables expressed in terms of liner combinations of the Wolfenstein parameters (i.e. of the polarization transfer coefficients Dij) may exhibit particularly important features. Therefore, according to a number of researchers, the combinations Dk, designed within the framework of the model of Bleszynski et al., if the conditions formed there are met, can create a useful diagnostic tool. Eventually, in favorable cases, in agreement with this model, certain combinations Dk  of the polarization transfer coefficients Dij  may demonstrate selective dependence upon individual spin-dependent amplitudes (isoscalar or isovector) in the effective NN potential.

 

It is well known that the properties of nuclei are often modeled using effective nucleon–nucleon (NN) interaction. Various nucleon–nuclear reactions are typically used to investigate this interaction. Specifically, the inelastic scattering of polarized protons from nuclei (especially with the excitation of unnatural parity states) is known to require the inclusion of the spin components of the NN interaction (spin-orbit, tensor (direct and exchange), and spin-dependent central components) in its description. It would be interesting to study the triple scattering of non-polarized protons in order to determine the contribution of the above-mentioned interaction parts. The theory of such scattering was developed by Wolfenstein in. However, experiments of this kind are incredibly cumbersome and do not provide the needed energy resolution. This approach was superseded by measurements that used three types of polarized beams (N, L, and S) in turns. Type N is characterized by a polarization direction that is perpendicular to the scattering plane. Type L polarization results from the direction of an incident beam, and type S has a lateral polarization direction that lies in the scattering plane but is orthogonal to the L direction.

Summary

Abstract.–The values of the normal-component spin observables, Ay, P and DNN , are supplemented here with the double-scattering spin (polarization) transfer coefficients Dij  in the (p,p) reactions. Measurements with the polarized beam, normal to the scattering plane, usually provide the cross-section dϭ/dΩ (θ), the analyzing power Ay(θ), and the DNN (θ) polarization transfer (PT) at certain angles. The (p,p) measurements with in-plane polarization have yielded the transfer coefficients DSS, DSL, and DLL, DLS. Accordingly, the subscripts L and S refer to polarization along or perpendicular to the proton momentum, with the first subscript indicating the incoming momentum, and the second – the outgoing momentum. The coefficient Dij appears to be quite sensitive to the effective interaction and its modification in the nuclear medium. Within the framework of the plane-wave approximation, the observables are divided into the so-called polarized cross-sections. To construct them, we used combinations of the polarized transfer coefficients Dij within the model of Bleszynski et al. Under certain conditions, some particular combinations of the scattering observables can be attributed to specific (spin-dependent) amplitudes of the effective interaction. The lectures demonstrate how the polarization observables, acquired in the (p,p) reactions, can be determined by the spin dependence of the nucleon-nucleon (NN) interaction. Thus, the spin-transfer parameters can be conveyed by simple expressions in the plane-wave impulse approximation (PWIA). As a result, the diagonal Dij can be presented through the C, B, E, and F amplitudes in the NN interaction (as Moss has shown). The studies of Bleszynski et al. are of great importance as they have established certain combinations (Dk) in terms of the Dij. When these conditions are met, the values Dk may appear sensitive primarily to an individual component in the NN interaction. Some of our works published in English and Russian are presented in Supplement 1. 

Recommended to

This chapter, as well as the whole lecture course, is intended for students studying nuclear physics at universities and polytechnic schools.

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PUBLISHER
Анатолий Плавко
Санкт-Петербург, Russia
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Posted Oct 31, 2024
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Book details
Author(s)A.V. Plavko
Cover Type (if the book was published)Soft Copy
Number of Pages34
Date Published31.10.2024
 
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