Neutron and Synchrotron Radiation for Condensed Matter Studies, Volume 1José Baruchel Materiały Higher European Research Course for Users of Large Experimental Systems (HERCULES), Course on Neutron and Synchrotron Radiation for Condensed Matter Studies, Grenoble. |
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absorption angle angular approximation atom Bragg angle Bragg reflection Bragg's law calculated component correlation function corresponding cross section cross-section Crystallography density depends detector diffracted beam diffraction pattern diffractometers diffuse scattering direction dispersion distance dynamic electron equation ESRF EXAFS experimental experiments extinction fibre diffraction field Figure Fourier transform geometry incident beam incoherent incoherent scattering inelastic interaction linear magnetic measured method monochromatic monochromator neutron diffraction neutron scattering observed optical orbit orientation oscillations parameters particle peak perfect crystal perpendicular phase photoelectron Photoemission Photoemission Spectroscopy photon Phys plane wave polarisation polarization powder diffraction range reciprocal lattice reciprocal space resolution rotation sample scan scattered intensity scattering function scattering length scattering vector single crystal solid sources spectroscopy spin structure factor surface synchrotron radiation technique thermal topograph transition unit cell wave vector wave-fields wave-vector wavelength width X-ray microscope zone plate