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  • Local Probing of a Superconductor’s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope

    Thomas Gozlinski

    Band 32 von Experimental Condensed Matter Physics
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    Complementary to scattering techniques, scanning tunnelling microscopy provides atomic-scale real space information about a material's electronic state of matter. State-of-the-art designs of a scanning tunnelling microscope (STM) allow measurements at millikelvin temperatures with unprecedented energy resolution. Therefore, this instrument excels in probing the superconducting state at low temperatures and especially its local quasiparticle excitations as well as bosonic degrees of freedom.

    Umfang: III, 190 S.

    Preis: 49.00 €

    Fächer:

    Physik 

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    Empfohlene Zitierweise
    Gozlinski, T. 2023. Local Probing of a Superconductor’s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000155716
    Gozlinski, T., 2023. Local Probing of a Superconductor’s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000155716
    Gozlinski, T. Local Probing of a Superconductor’s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope. KIT Scientific Publishing, 2023. DOI: https://doi.org/10.5445/KSP/1000155716
    Gozlinski, T. (2023). Local Probing of a Superconductor’s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000155716
    Gozlinski, Thomas. 2023. Local Probing of a Superconductor’s Quasiparticles and Bosonic Excitations with a Scanning Tunnelling Microscope. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000155716




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    Weitere Informationen

    Veröffentlicht am 24. März 2023

    Sprache

    Englisch

    Seitenanzahl:

    210

    ISBN
    Paperback 978-3-7315-1279-0

    DOI
    https://doi.org/10.5445/KSP/1000155716