Polarization In Proton Proton Scattering Using A Polarized Target Part I 0330 To 0740 Gev Part Ii 170 To 615 Gev PDF Download

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Polarization in Proton-Proton Scattering Using a Polarized TARGET. Part I. 0.330 to 0.740 GeV Part II 1.70 to 6.15 GeV.

Polarization in Proton-Proton Scattering Using a Polarized TARGET. Part I. 0.330 to 0.740 GeV Part II 1.70 to 6.15 GeV.
Author:
Publisher:
Total Pages: 14
Release: 1964
Genre:
ISBN:

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Using the Berkeley polarized-proton target, we have measured the polarization parameter P([theta]) for proton-proton (p-p) scattering. The measurements were obtained at beam kinetic energies of 0.330, 0.680, and 0.740 GeV at the 184-in. synchrocyclotron and 1.70, 2.85, 3.50, 4.00, 5.05, and 6.15 GeV at the Bevatron. The angular regions measured were from 20 to 100 degrees center of mass; the square of the four-momentum transfer ranged from 0.1 to 0.8 (GeV/c)2.


The Polarization Parameter in Elastic Proton-proton Scattering from .75 to 2.84 Gev

The Polarization Parameter in Elastic Proton-proton Scattering from .75 to 2.84 Gev
Author: Homer A Neal (Jr)
Publisher:
Total Pages: 114
Release: 1966
Genre:
ISBN:

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A double-scattering technique was employed to measure the polarization parameter in elastic proton-proton scattering at .75, 1.03, 1.32, 1.63, 2.24, and 2.84 GeV. An external proton beam from the Brookhaven Cosmotron was focussed on a three inch long liquid hydrogen target and the elastic recoil and scattered protons were detected in coincidence by scintillation counters. The polarization produced in the scattering process was inferred from the azimuthal asymmetry exhibited in the scattering of the recoil beam from a carbon target. This asymmetry was measured by a set of two scintillation counter telescopes which symmetrically viewed the carbon target. The analyzing power of this arrangement was previously determined in an independent experiment employing a 40% polarized proton beam. The corrected values of the polarization parameter are exhibited as a function of the center-of-mass scattering angle for each incident beam energy. The prediction of the Regge theory that the polarization parameter in elastic proton-proton scattering is related to the total proton-proton and proton-antiproton cross sections was found to be consistent with the experimental results. (Author).


THE POLARIZATION PARAMETER IN ELASTIC PROTON-PROTON SCATTERING FROM .75 TO 2.84 GEV..

THE POLARIZATION PARAMETER IN ELASTIC PROTON-PROTON SCATTERING FROM .75 TO 2.84 GEV..
Author: HOMER ALFRED. NEAL
Publisher:
Total Pages: 118
Release: 1966
Genre:
ISBN:

Download THE POLARIZATION PARAMETER IN ELASTIC PROTON-PROTON SCATTERING FROM .75 TO 2.84 GEV.. Book in PDF, ePub and Kindle

The polarization parameter in elastic proton-proton scattering was measured at 0.75, 1.03, 1.32, 1.63, 2.24, and 2.84 GeV by employing a double-scattering technique. An external proton beam from the Brookhaven Cosmotron was focused on a three-inch long liquid hydrogen target and the elastic recoil and scattered protons were detected in coincidence by scintillation counters. The polarization of the recoil beam was determined from the azimuthal asymmetry exhibited in its scattering from a carbon target. Values of the polarization parameter as a function of the center-of-mass scattering angle are given for each incident beam energy. The predictions of the Regge theory for polarization in elastic proton-proton scattering and recently published phase shift solutions are compared with the experimental results. Surprisingly good agreement with the Regge predictions is found despite the low energies involved. (Author).


Introduction to Polarization Physics

Introduction to Polarization Physics
Author: Sandibek B. Nurushev
Publisher: Springer
Total Pages: 435
Release: 2012-10-28
Genre: Science
ISBN: 3642321631

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This book is devoted to the polarization (spin) physics of high energy particles and contains three parts. The first part presents the theoretical prefaces of polarization in the particle physics for interpretations, predictions and bases for understanding the following two parts. The second part of the book presents the description of the essential polarization experiments including the recent ones. This part is devoted to the innovative instrumentations, gives the parameters of the polarized beams, targets, polarized gas jets and polarimeters. The third part of the book concentrates on the important achievements in polarization physics. The book can be used in lectures on nuclear and particle physics and and nuclear instruments and methods. As supplementary reading this book is useful for researchers working in particle and nuclear physics.