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Implementation of the Polarized HD Target at the Thomas Jefferson National Accelerator Facility

Implementation of the Polarized HD Target at the Thomas Jefferson National Accelerator Facility
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Release: 2007
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The original goal of this proposal was to study frozen spin polarized targets (HD target and other technologies) and produce a conceptual design report for the implementation of such a target in the HALL B detector of the Thomas Jefferson National Accelerator Facility (JLab). During the first two years of the proposal, we came to the conclusion that the best suited target for JLab was a frozen spin target and helped with the design of such a target. We have not only achieved our original goal but have exceeded it by being involved in the actual building and testing of parts the target. The main reason for this success has been the hiring of a senior research associate, Dr. Oleksandr Dzyubak, who had more than 10 years of experience in the field of frozen spin polarized targets. The current grant has allowed the USC nuclear physics group to strengthen its role in the JLab collaboration and make important contribution to both the detector development and the scientific program.


Polarimetry of the Polarized Hydrogen Deuteride HDice Target Under an Electron Beam

Polarimetry of the Polarized Hydrogen Deuteride HDice Target Under an Electron Beam
Author: Vivien Laine
Publisher:
Total Pages: 0
Release: 2013
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ISBN:

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The study of the nucleon structure has been a major research focus in fundamental physics in the past decades and still is the main research line of the Thomas Jefferson National Accelerator Facility (Jefferson Lab). For this purpose and to obtain statistically meaningful results, a highly efficient polarized target is essential. This means high polarization and high relative density of polarized material. This dissertation presents the principles and usage procedures of a Hydrogen Deuteride (HD) target that presents both such characteristics. Although the HD target has been shown to work successfully under a high intensity photon beam, it remained to be seen if the target could stand an electron beam of reasonably high current (nA). In this perspective, the HD target was tested for the first time in its “frozen spin” mode under an electron beam during the g14 experiment in the Jefferson Lab's Hall B in 2012. Two methods of polarimetry are also discussed in this dissertation : one with Nuclear Magnetic Resonance of this HD target during the electron beam tests, and another with the elastic scattering of electrons off a polarized target by using data taken on helium-3 during the E97-110 experiment that occurred in Jefferson Lab's Hall A in 2003.


Polarized Targets and Beams - Parallel Session Summary

Polarized Targets and Beams - Parallel Session Summary
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Release: 2000
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Recent progress on the polarized targets and polarized beams at Bonn, Brookhaven, Jefferson Lab, Mainz and PSI were reported in the parallel sessions. Summary of the progress is presented here.


Polarimetry of the Polarized Hydrogen Deuteride HDice Target Under an Electron Beam

Polarimetry of the Polarized Hydrogen Deuteride HDice Target Under an Electron Beam
Author:
Publisher:
Total Pages:
Release: 2013
Genre:
ISBN:

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The study of the nucleon structure has been a major research focus in fundamental physics in the past decades and still is the main research line of the Thomas Jefferson National Accelerator Facility (Jefferson Lab). For this purpose and to obtain statistically meaningful results, having both a polarized beam and a highly efficient polarized target is essential. For the target, this means high polarization and high relative density of polarized material. A Hydrogen Deuteride (HD) target that presents both such characteristics has been developed first at Brookhaven National Lab (BNL) and brought to the Hall B of Jefferson Lab in 2008. The HD target has been shown to work successfully under a high intensity photon beam (BNL and Jefferson Lab). However, it remained to be seen if the target could stand an electron beam of reasonably high current (nA). In this perspective, the target was tested for the first time in its frozen spin mode under an electron beam at Jefferson Lab in 2012 during the g14 experiment. This dissertation presents the principles and usage procedures of this HD target. The polarimetry of this target with Nuclear Magnetic Resonance (NMR) during the electron beam tests is also discussed. In addition, this dissertation also describes another way to perform target polarimetry with the elastic scattering of electrons off a polarized target by using data taken on helium-3 during the E97-110 experiment that occurred in Jefferson Lab's Hall A in 2003.


A Polarized Target for the CLAS Detector

A Polarized Target for the CLAS Detector
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Release: 2002
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We describe the design, construction, and performance of a polarized solid target for use in electron scattering experiments with the CEBAF Large Acceptance Spectrometer (CLAS). Protons and deuterons are continuously polarized by microwave-induced spin flip transitions at 1 K and 5 T. The target operated successfully during two cycles in 1998 and 2000, providing proton and deuteron polarizations as high as 96% and 46%, respectively. The unique features of the target which permit its use inside a 4pi spectrometer are stressed. Comparison is made between the target polarization measured by the traditional method of NMR and by electron elastic scattering.


Polarized Source Performance and Developments at Jefferson Lab

Polarized Source Performance and Developments at Jefferson Lab
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Release: 2000
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The polarized photoinjector at Jefferson Lab continues to provide high average current, high polarization, high quality beam to nuclear physics Users in as many as three endstations simultaneously. Long lifetime operation has been obtained from two identical polarized guns. A new high power mode locked Ti-sapphire laser has been constructed to enhance the effective operating lifetime of the photoinjector. Efforts to enhance beam polarization and reduced helicity correlated beam systematic effects are underway.


Proceedings of the Ninth International Workshop Polarized Sources and Targets

Proceedings of the Ninth International Workshop Polarized Sources and Targets
Author: Vladimir P. Derenchuk
Publisher: World Scientific
Total Pages: 404
Release: 2002
Genre: Science
ISBN: 9789810249175

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This book is an up-to-date survey of the science and technology of creating polarized beams and polarized targets. The papers in this collection describe state-of-the-art sources of polarized electrons, ions, atoms, neutrons, and radioactive isotopes, discuss new polarized solid and gas target techniques, present recent advances in polarimetry, and review the use of polarized gas in medical imaging.


Status of the Focal Plane Polarimeter for Hall A at TJNAF.

Status of the Focal Plane Polarimeter for Hall A at TJNAF.
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Release: 1997
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The focal plane polarimeter (FPP) for Hall A at the Thomas Jefferson National Accelerator Facility (TJNAF) is ready for experiments. The ability to calibrate the FPP on-site using elastic scattering of polarized electrons from an unpolarized hydrogen target is demonstrated. The ratio of the proton electric form factor to its magnetic form factor has been measured at Q2 = 0.810 GeV/c2.


Recent Advances of Polarized 3He Target at Jefferson Lab

Recent Advances of Polarized 3He Target at Jefferson Lab
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Release: 2011
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Polarized 3He target has been widely used in nuclear and particle experiments to study the neutron structure in the spin degree of freedom, as most of the 3He spin is carried by the unpaired neutron. Spin-Exchange Optical Pumping (SEOP) process is used in Jefferson Lab Hall A to polarize its 3He target. Through developments in recent years, both the performance and corresponding polarimetry of such a target were greatly improved. Several experiments recently carried out in Hall A benefited remarkably from this target for the record highest figure of merit.