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Titlebook: Strong and Weak Topology Probed by Surface Science; Topological Insulato Christian Pauly Book 2015 Springer Fachmedien Wiesbaden 2015 scann

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Book 2015by using two powerful techniques for mapping the surface electronic structure: scanning tunneling spectroscopy (STS) and angle-resolved photoemission spectroscopy (ARPES). In the case of a phase change material, this opens up the possibility of switching between an insulating amorphous and a conduct
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Fundamentals of Topological Insulators,twodimensional (2D) and three-dimensional (3D) TIs and stress how this new class can be classified in terms of topology. This new approach of topological invariants has become a powerful tool for understanding many body phases which have bulk energy gaps, and has resulted in the discovery of interesting new phases.
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Experimental Methods, of the atomic arrangement of a conducting surface as well as its electronic properties on a sub-nanometer length scale. On the other hand, Angle-Resolved Photoemission Spectroscopy (ARPES) which also maps the electronic properties of a system, but on a larger length scale, depending on the spot size of the focused incident beam (10μm to 1 mm).
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Summary,the technologically relevant phase change materials. In the case of the weak topology, i.e. the other topological class in 3D, the experimental study on systems which are build by graphene-like sheets, displays the first ever demonstration of weak topological properties.
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2522-0756 phase change materials Sb.2.Te.3. and Ge.2.Sb.2.Te.5. by using two powerful techniques for mapping the surface electronic structure: scanning tunneling spectroscopy (STS) and angle-resolved photoemission spectroscopy (ARPES). In the case of a phase change material, this opens up the possibility of s
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