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  1. Basic Theoretical Concepts

    Superconductivity is the phenomenon of dissipationless transport which occurs in many metals at su.ciently low temperatures. Metals in the...
    Chapter
  2. Aid of Scaling Laws in the Achievement of a Well-Controlled Film Deposition Process

    Scaling laws are profitably applied in all the scientific disciplines. Approximated solutions constitute a valuable aid for the analysis of complex...
    Giacomo Messina, Saveria Santangelo in Carbon
    Chapter
  3. Vibrational Spectroscopy in Ion–Irradiated Carbon–Based Thin Films

    In this work we present and discuss some selected experiments on ion–irradiated carbon–based thin films. Vibrational spectroscopy is used to...
    Giuseppe Compagnini, Orazio Puglisi, ... Giovanni Strazzulla in Carbon
    Chapter
  4. Laser Ablation-Deposited CN x Thin Films

    Amorphous CN x thin films were deposited at room temperature by pulsed laser ablation of graphite targets in a...
    Enza Fazio, Enrico Barletta, ... Sebastiano Trusso in Carbon
    Chapter
  5. Elastic and Structural Properties of Carbon Materials Investigated by Brillouin Light Scattering

    Brillouin light scattering (BS) is a nondestructive technique exploited to investigate collective excitations in solids: acoustic phonons, spin...
    Marco G. Beghi, Carlo S. Casari, ... Carlo E. Bottani in Carbon
    Chapter
  6. Pulsed Laser Deposition of Carbon Films: Tailoring Structure and Properties

    Pulsed laser deposition (PLD) is a versatile technique to synthesize films of a given material with strongly different properties. In this chapter we...
    Paolo M. Ossi, Antonio Miotello in Carbon
    Chapter
  7. Spin-Based Quantum Dot Quantum Computing

    This chapter is an overview of the research on spin-based quantum dot quantum computation, which covers two most prominent architectures, one based...
    Chapter
  8. Optical Analysis of Monolayers at Surfaces and Interfaces

    Surface as well as interface properties are crucial for tailoring advanced materials, especially if the structure size in one or more dimensions...
    Chapter
  9. AlGaN/GaN Electrolyte-Gate Field-Effect Transistors as Transducers for Bioelectronic Devices

    AlGaN/GaN electrolyte gate field-effect transistors are assessed as a transducer device for biosensor applications. Their low-frequency noise power...
    Georg Steinhoff, Barbara Baur, ... Martin Eickhoff in Advances in Solid State Physics
    Chapter
  10. Semiconductor Few-Electron Quantum Dots as Spin Qubits

    The spin of an electron placed in a magnetic field provides a natural two-level system suitable as a qubit in a quantum computer[1]. In this work, we...
    J.M. Elzerman, R. Hanson, ... L.P. Kouwenhoven in Quantum Dots: a Doorway to Nanoscale Physics
    Chapter
  11. Ion Microscopy on Diamond

    Because of its physical properties (strong radiation hardness, wide energy gap with a consequent extremely low dark current, very large electron and...
    Claudio Manfredotti in Carbon
    Chapter
  12. Raman Spectroscopy and Optical Properties of Amorphous Diamond-Like Carbon Films

    The Raman spectroscopy and optical characterization of amorphous hydrogen-free diamond-like carbon films is described. The samples were prepared by...
    Leonid Khriachtchev in Carbon
    Chapter
  13. Correlation Between Local Structure and Film Properties in Amorphous Carbon Materials

    A discussion of the various amorphous carbon and amorphous hydrogenated carbon films is presented. A link between sp 2, sp...
    Giovanni Fanchini, Alberto Tagliaferro in Carbon
    Chapter
  14. Thermodynamics – Past, Present and Future

    We begin with historical remarks on the basic contributions to thermodynamics and statistics with some bias to scientists working in Berlin as...
    Chapter
  15. Dynamical Variational Principles for Strongly Correlated Electron Systems

    The self-energy-functional approach (SFA) is discussed in the context of different variational principles for strongly correlated electron systems....
    Michael Potthoff in Advances in Solid State Physics
    Chapter
  16. Chemistry and Morphological Properties of Metal Interfaces to Organic Semiconductors

    Metal contacts to organic semiconductors play a decisive role for the performance of organic based devices such as organic light emitting diodes,...
    D.R.T. Zahn, G. Salvan, ... B.A. Paez in Advances in Solid State Physics
    Chapter
  17. Two-Gap Superconductivity in Magnesium Diboride

    It is by now generally accepted that the recently discovered superconductor MgB2 is a superconductor with two energy gaps. Here we discuss how this...
    Chapter
  18. Atomic-Scale Properties of High-k Dielectrics: Ab Initio Study for Pr-Based Materials

    We discuss the atomic and electronic structures and energetics of native point defects and of impurities (Si, Ti, B, moisture) in PrO1.5 and, to some...
    Jarek Da̧browski, Andrzej Fleszar, ... Peter Zaumseil in Advances in Solid State Physics
    Chapter
  19. Dynamics of Membranes: From Passive to Active Systems

    Fluid lipid membranes, which, together with filamentous proteins like actin, form the basic structural component of cells, have been a central topic...
    H.-G. Döbereiner, B.J. Dubin-Thaler, ... M.P. Sheetz in Advances in Solid State Physics
    Chapter
  20. Electrical Characterization of Rare Earth Oxides Grown by Atomic Layer Deposition

    In this contribution, we investigate the electrical properties of thin (3–30 nm) Lu2O3 and Yb2O3 oxides grown on silicon by atomic layer depostion....
    Sabina Spiga, Claudia Wiemer, ... Marco Fanciulli in Rare Earth Oxide Thin Films
    Chapter
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