Scattering At Large Momentum And Energy Transfer PDF Download

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Large Momentum Transfer Electron Scattering from Few-nucleon Systems

Large Momentum Transfer Electron Scattering from Few-nucleon Systems
Author:
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Total Pages:
Release: 1979
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ISBN:

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A review is given of the experimental results from a series of measurements at SLAC of large momentum transfer (Q2> 20 fm−2) electron scattering at forward angles from nuclei with A less than or equal to 4. Theoretical interpretations of these data in terms of traditional nuclear physics models and in terms of quark constituent models are described. Some physics questions for future experiments are explored, and a preview of possible future measurements of magnetic structure functions of light nuclei at large Q2 is given.


Inclusive Electron - Nucleus Scattering at Large Momentum Transfer

Inclusive Electron - Nucleus Scattering at Large Momentum Transfer
Author:
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Total Pages:
Release: 1999
Genre:
ISBN:

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Inclusive electron scattering is measured with 4.045 GeV incident beam energy from C, Fe, and Au targets. The measured energy transfers and angles correspond to a kinematic range for Bjorken x>1 and momentum transfers from Q2 = 1-7 (GeV/c)2. When analyzed in terms of the y-scaling function the data show for the first time an approach to scaling for values of the initial nucleon momenta significantly greater than the nuclear matter Fermi momentum (i.e.,>0.3 GeV/c).


Electron Dynamics by Inelastic X-Ray Scattering

Electron Dynamics by Inelastic X-Ray Scattering
Author: Winfried Schuelke
Publisher: OUP Oxford
Total Pages: 608
Release: 2007-06-21
Genre: Science
ISBN: 0191523283

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Knowledge of the dynamics of many-electron systems is of fundamental importance to all disciplines of condensed matter physics. A very effective access to electron dynamics is offered by inelastic X-ray scattering (IXS) spectroscopy. The double differential scattering cross section for IXS is directly related to the time-dependent two-particle density correlation function, and, for large momentum and energy transfer (Compton limit) to the electron momentum distribution. Moreover, resonant inelastic X-ray scattering (RIXS) enables the study of electron dynamics via electronic excitations in a very selective manner (e.g. selectively spin, crystal momentum, or symmetry), so that other methods are efficaciously complemented. The progress of IXS spectroscopy is intimately related to the growing range of applications of synchrotron radiation. The aim of the book is to provide the growing community of researchers with accounts of experimental methods, instrumentation, and data analysis of IXS, with representative examples of successful applications, and with the theoretical framework for interpretations of the measurements.