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Titlebook: Hard X-ray Photoelectron Spectroscopy (HAXPES); Joseph Woicik Book 2016 Springer International Publishing Switzerland 2016 Atomic and Mole

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Hard-X-ray Photoelectron Spectroscopy of Atoms and Molecules,nd molecular HAXPES experienced several decades when the emphasis in gas-phase research was in the soft-X-ray range, mainly due to the lack of suitable experimental conditions. In the last few years, at some of the newer synchrotron radiation sources, hard-X-ray beamlines have been developed which p
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Inelastic Mean Free Paths, Mean Escape Depths, Information Depths, and Effective Attenuation Lengthon lengths for applications in hard X-ray photoelectron spectroscopy (HAXPES). Sources of data are provided for these parameters and useful predictive equations are given. Information is given on databases available from the National Institute of Standards and Technology (NIST) for HAXPES applic
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Hard X-ray Angle-Resolved Photoelectron Spectroscopy (HARPES),rged as a powerful technique for studying momentum-resolved bulk electronic structure of novel materials, buried interfaces and heterostructures. HARPES provides access to the bulk electronic structure of solids due to the high inelastic mean-free paths (IMFP) of the valence-band electrons emitted a
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One Step Model Description of HARPES: Inclusion of Disorder and Temperature Effects,ties of various materials. In practise enhanced bulk sensitivity can be achieved by so called threshold photoemission. Increased bulk sensitivity may suggest that LSDA band structure or density of states calculations can be directly compared to the measured spectra. However, various important effect
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The Influence of Final-State Effects on XPS Spectra from First-Row Transition-Metals, iron ore, 21.5 million tonnes (Mt) of chromium, 11.1 Mt of zinc, 9.6 Mt of manganese, 6.2 Mt of titanium, 1.6 Mt of nickel, 1.6 Mt of copper, 62,000 tonnes of cobalt and 54,000 tonnes of vanadium were produced from mining operations around the world [.].
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Optimizing Polarization Dependent Hard X-ray Photoemission Experiments for Solids,to the valence band. To optimize this type of experiments we have set up a photoelectron spectroscopy system consisting of two electron energy analyzers mounted such that one detects the photoelectrons propagating parallel to the polarization vector (E) of the light and the other perpendicular. This
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