Journal ArticleDOI
Singlet channel coupling in deuteron elastic scattering at intermediate energies
TLDR
In this article, the effects of deuteron breakup to singlet spin intermediate states, on the elastic scattering observables for the 58 Ni (d, d ) 58 Ni reaction at 400 and 700 MeV, are studied quantitatively.About:
This article is published in Nuclear Physics.The article was published on 1990-08-13. It has received 8 citations till now. The article focuses on the topics: Elastic scattering & Singlet state.read more
Citations
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A three-body Glauber model for polarized deuteron scattering at intermediate energies
TL;DR: In this article, a parameter-free Glauber model calculation for deuteron-nucleus elastic scattering is carried out with full spin-dependence, which takes as its starting point the Dirac optical model for the underlying nucleon nucleus potentials.
Journal ArticleDOI
Effects of tensor interaction in p-n breakup states on deuteron elastic scattering
TL;DR: In this article, the Reid soft core potential is employed for p-n continuum states in virtual-breakup components of deuteron elastic scattering, which produces small but non-negligible corrections to tensor analyzing powers and a remarkable change in a particular linear combination of polarization transfer coefficients.
Journal ArticleDOI
DWIA calculations for deuteron inelastic scattering at intermediate energies
TL;DR: In this paper, a DWIA method was developed to calculate (d, d′ ) inelastic scattering at intermediate energies, and a comparison was made to existing data for 12 C(d,d′ ) at 400 MeV for dσ dΩ, Ay, Ay,Ayy, Py, Kyy and the spin-flip probability.
Journal ArticleDOI
Spin-dependent interactions and polarization observables in elastic scattering of deuterons at intermediate energies
TL;DR: In this article, spin-space tensor amplitudes which characterize spin-dependent interactions are introduced by the invariant-amplitude method so that effects of T R - and T L -type tensor interactions are described separately.
Journal ArticleDOI
Measurement of a complete set of analyzing powers for deuteron elastic scattering from 40Ca at 270 MeV and an investigation of tensor potentials
Tetsuya Ohnishi,Hideyuki Sakai,H. Okamura,S. Ishida,H. Otsu,N. Sakamoto,Tomohiro Uesaka,Tomotsugu Wakasa,Y. Satou,S. Fujita,T. Nonaka,E. J. Stephenson +11 more
TL;DR: In this paper, the authors measured the differential cross section and the analyzing powers, Ay, Ayy, Axx, and Axz, for polarized deuteron elastic scattering from 40Ca at 270 MeV.
References
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Local phenomenological nucleon-nucleon potentials
TL;DR: Hard (infinitely hard) and soft (Yukawa) core potentials have been fit to Yale and Livermore phase parameters and low-energy data as discussed by the authors, and it is found that neither the short-range behavior of the potentials nor the central-to-tensor ratio in the 3 S 1 - 3 D 1 state is well determined by the data.
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High energy scattering of deuterons by complex nuclei
TL;DR: In this paper, an effective deuteron-nucleus potential consisting of an optical well plus a spin-orbit interactive was derived, starting from a Saxon potential and a spinorbit term for the interaction between each nucleon in the deuterons and the nuclens.
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Global Dirac optical potentials for elastic proton scattering from heavy nuclei
TL;DR: The predictive power of the global Dirac optical model fits to elastic proton scattering data from heavy nuclear targets at energies between 65 and 1040 MeV is tested for both interpolation and extrapolation.
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Chapter III. Effects of Deuteron Virtual Breakup on Deuteron Elastic and Inelastic Scattering
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Dirac optical model analysis of p-/sup 40/Ca elastic scattering at 180 MeVand the wine-bottle-bottom shape
TL;DR: A Dirac equation optical model calculation with the real part of the optical potential constrained by relativistic model considerations is used to represent 180 MeV p-/sup 40/Ca elastic scattering data.