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Measurement of Spin Structure Functions at Low to Moderate Q{sup 2} Using CLAS.

Measurement of Spin Structure Functions at Low to Moderate Q{sup 2} Using CLAS.
Author: CLAS Collaboration
Publisher:
Total Pages:
Release: 2003
Genre:
ISBN:

Download Measurement of Spin Structure Functions at Low to Moderate Q{sup 2} Using CLAS. Book in PDF, ePub and Kindle

Spin structure functions of the nucleon in the region of large x and small to moderate Q2 continue to be of high current interest. A large experimental program to measure the spin structure function g1 and its first moment Gamma{sub 1} has been concluded at Jefferson Lab. An overview of the experiment and its kinematic coverage will be discussed. We will also show preliminary results from the 5.7 GeV and the 1.6 GeV data sets.


Measurement of Spin Structure Functions at Moderate Q{sup 2} Using CLAS.

Measurement of Spin Structure Functions at Moderate Q{sup 2} Using CLAS.
Author: Volker Burkert
Publisher:
Total Pages:
Release: 2003
Genre:
ISBN:

Download Measurement of Spin Structure Functions at Moderate Q{sup 2} Using CLAS. Book in PDF, ePub and Kindle

Spin structure functions of the nucleon in the region of large z and small to moderate Q{sup 2} continue to be of high current interest. Among the topics one can study in this kinematic regime are spin-dependent resonance transition amplitudes and their interference with each other and the non-resonant background, the behavior of the asymmetry A{sub 1} at large x, and the presence or absence of local duality in spin structure functions. The first moment of the spin structure function g{sub 1} goes through a rapid transition from the photon point (Q{sup 2} = 0), where it is constrained by the Gerasimov-Drell-Hearn sum rule, to the deep inelastic limit where it is sensitive to the nucleon spin fraction carried by quarks. This opens up the possibility to study the transition from hadronic to quark degrees of freedom over the whole range of Q{sup 2}. Recently, we concluded a large experimental program to measure these observables with polarized proton and deuteron targets at Jefferson Lab. A highly polarized electron beam, solid polarized NH{sub 3} and ND{sub 3} targets and the CEBAF Large Acceptance Spectrometer (CLAS) in Hall B were used to accumulate over 23 billion events with 4 different beam energies of 1.6, 2.5, 4.2 and 5.7 GeV. We present an overview of the experiment, its kinematic coverage and its statistical power. We show final results from the first run at 2.5 GeV and 4 GeV and preliminary results from the 5.7 GeV and the 1.6 GeV data sets.


Measurement of Spin Structure Functions at Low to Moderate Q2 Using CLAS.

Measurement of Spin Structure Functions at Low to Moderate Q2 Using CLAS.
Author:
Publisher:
Total Pages:
Release: 2003
Genre:
ISBN:

Download Measurement of Spin Structure Functions at Low to Moderate Q2 Using CLAS. Book in PDF, ePub and Kindle

Spin structure functions of the nucleon in the region of large x and small to moderate Q2 continue to be of high current interest. A large experimental program to measure the spin structure function g1 and its first moment Gamma1 has been concluded at Jefferson Lab. An overview of the experiment and its kinematic coverage will be discussed. We will also show preliminary results from the 5.7 GeV and the 1.6 GeV data sets.


Measurement of Spin Structure Functions at Moderate Q2 Using CLAS.

Measurement of Spin Structure Functions at Moderate Q2 Using CLAS.
Author:
Publisher:
Total Pages:
Release: 2003
Genre:
ISBN:

Download Measurement of Spin Structure Functions at Moderate Q2 Using CLAS. Book in PDF, ePub and Kindle

Spin structure functions of the nucleon in the region of large z and small to moderate Q2 continue to be of high current interest. Among the topics one can study in this kinematic regime are spin-dependent resonance transition amplitudes and their interference with each other and the non-resonant background, the behavior of the asymmetry A1 at large x, and the presence or absence of local duality in spin structure functions. The first moment of the spin structure function g1 goes through a rapid transition from the photon point (Q2 = 0), where it is constrained by the Gerasimov-Drell-Hearn sum rule, to the deep inelastic limit where it is sensitive to the nucleon spin fraction carried by quarks. This opens up the possibility to study the transition from hadronic to quark degrees of freedom over the whole range of Q2. Recently, we concluded a large experimental program to measure these observables with polarized proton and deuteron targets at Jefferson Lab. A highly polarized electron beam, solid polarized NH3 and ND3 targets and the CEBAF Large Acceptance Spectrometer (CLAS) in Hall B were used to accumulate over 23 billion events with 4 different beam energies of 1.6, 2.5, 4.2 and 5.7 GeV. We present an overview of the experiment, its kinematic coverage and its statistical power. We show final results from the first run at 2.5 GeV and 4 GeV and preliminary results from the 5.7 GeV and the 1.6 GeV data sets.


Clemens, Paul Lewis

Clemens, Paul Lewis
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Measurement of Inclusive Spin Structure Functions of the Deuteron with CLAS.

Measurement of Inclusive Spin Structure Functions of the Deuteron with CLAS.
Author:
Publisher:
Total Pages:
Release: 2002
Genre:
ISBN:

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We report the results of a new measurement of spin structure functions of the deuteron in the region of moderate momentum transfer (Q2 = 0.27 -- 1.3 (GeV/c)2) and final hadronic state mass in the nucleon resonance region (W = 1.08 -- 2.0 GeV). We scattered a 2.5 GeV polarized continuous electron beam at Jefferson Lab off a dynamically polarized cryogenic solid state target (15ND3) and detected the scattered electrons with the CEBAF Large Acceptance Spectrometer (CLAS). From our data, we extract the longitudinal double spin asymmetry A{sub {parallel}} and the spin structure function g1{sup d}. Our data are generally in reasonable agreement with existing data from SLAC where they overlap, and they represent a substantial improvement in statistical precision. We compare our results with expectations for resonance asymmetries and extrapolated deep inelastic scaling results. Finally, we evaluate the first moment of the structure function g1{sup d} and study its approach to both the deep inelastic limit at large Q2 and to the Gerasimov-Drell-Hearn sum rule at the real photon limit (Q2−°. We find that the first moment varies rapidly in the Q2 range of our experiment and crosses zero at Q2 between 0.5 and 0.8 (GeV/c)2, indicating the importance of the [Delta] resonance at these momentum transfers.