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  1. 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
  2. Rare Earth Oxides Grown by Molecular Beam Epitaxy for Ultimate Scaling

    Combination of lanthanum and other rare earth oxides with HfO2 yields stable compounds which withstand transistor processing and have low gate...
    Athanasios Dimoulas in Rare Earth Oxide Thin Films
    Chapter
  3. Atomic Layer Deposition of Rare Earth Oxides

    The principles of Atomic Layer Deposition (ALD) for thin film growth are briefly introduced, emphasizing the aspects of a self-limiting mechanism....
    Jani Päiväsaari, Jaakko Niinistö, ... Lauri Niinistö in Rare Earth Oxide Thin Films
    Chapter
  4. Sesquioxides as Host Materialsfor Rare-Earth-Doped Bulk Lasersand Active Waveguides

    This Chapter focuses on the optical applications of rare-earth oxides. Due to their thermo-mechanical properties, the sesquioxides of yttrium,...
    Sebastian Bär, Hanno Scheife, ... Günter Huber in Rare Earth Oxide Thin Films
    Chapter
  5. Domain-Wall Dynamics in Nanowiresand Nanostrips

    In nanowires or nanostrips, the magnetic domain walls have structures that depend sensitively on the transverse sizes of these samples. These...
    André Thiaville, Yoshinobu Nakatani in Spin Dynamics in Confined Magnetic Structures III
    Chapter
  6. HgTe, CdTe, (Cd,Hg)Te, Cd(Te,Se), Cd(Te,S), ZnTe, HgSe, CdSe, Cd(Se,S), (Cd,Mn)Se, (Cd,Zn)Se quantum dots-nanocrystals

    This document is part of subvolume C2 'Optical Properties', of volume 34 'Semiconductor quantum structures' of Landolt-Börnstein, Group III,...
    S.V. Gaponenko, U. Woggon in Optical Properties. Part 2
    Chapter
  7. Domain-Wall Dynamicsin Magnetic Logic Devices

    Domain walls propagate very well through magnetic nanowires and have been used to demonstrate a logic scheme in which the two stable magnetization...
    Del Atkinson, Colm C. Faulkner, ... Russell P. Cowburn in Spin Dynamics in Confined Magnetic Structures III
    Chapter
  8. Local Structure, Composition and Electronic Properties of Rare Earth Oxide Thin Films Studied Using Advanced Transmission Electron Microscopy Techniques (TEM-EELS)

    This contribution aims to demonstrate the ability of transmission electron microscopy (TEM) and its associated techniques, high-resolution...
    Sylvie Schamm, Giovanna Scarel, Marco Fanciulli in Rare Earth Oxide Thin Films
    Chapter
  9. Electronic Structure of Rare Earth Oxides

    The electronic structures of dioxides, REO2, and sesquioxides, RE2O3, of the rare earths, RE=Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy and Ho, are...
    Leon Petit, Axel Svane, ... Walter M. Temmerman in Rare Earth Oxide Thin Films
    Chapter
  10. Requirements of Precursors for MOCVDand ALD of Rare Earth Oxides

    This Chapter gives an account of the coordination chemistry of precursors for MOCVD and ALD of rare earth oxides. It opens with a brief introduction...
    Helen C. Aspinall in Rare Earth Oxide Thin Films
    Chapter
  11. Fabrication and Characterization of Rare Earth Scandate Thin Films Prepared by Pulsed Laser Deposition

    The continuous structure size reduction in semiconductor technology is leading to a considerable attention for advanced high-κ dielectrics. The rare...
    Jürgen Schubert, Tassilo Heeg, Martin Wagner in Rare Earth Oxide Thin Films
    Chapter
  12. Methods and Instrumentation

    On the basis of the given brilliances of present-day synchrotron radiation sources one easily estimates that they should be ideally suited for...
    Chapter
  13. Infrared Model Dielectric Functions

    This chapter reviews a selection of dielectric function models progressed for lineshape analysis of (far) infrared ellipsometry data. Contributions...
    Chapter
  14. 4 × 4 Transfer Matrix T p for Dielectric Helical Films

    Dielectric helical thin films (DHTF’s) are described by a homogeneous rotation of an arbitrarily oriented symmetric dielectric function tensor ɛ...
    Chapter
  15. Polaritons in Semiconductor Layer Structures

    The infrared optical response of layered structures composed of polar semiconductor materials is strongly influenced by resonant excitation of...
    Chapter
  16. Coherent Elastic Nuclear Resonant Scattering

    In the field of x-ray diffraction, the intensity and the direction of scattered waves are determined by the properties of the individual scatterers...
    Chapter
  17. Zincblende-Structure Materials (III–V)

    The following chapters will provide different examples including various semiconductor materials of contemporary interest and with diverse...
    Chapter
  18. 5. Simulation of Active and Nonlinear Photonic Nano-Materials in the Finite-Difference Time-Domain (FDTD) Framework

    A numerical method is presented that unites three-dimensional finite-differnce time-domain (FDTD) computer simulations of active, nonlinear photonic...
    A. Klaedtke, J. Hamm, O. Hess in Computational Materials Science
    Chapter
  19. 13. Parallel Implementation Strategiesfor Algorithms from Scientific Computing

    Many applications from scientific computing are computationally intensive and can therefore benefit from a realization on a parallel or a distributed...
    T. Rauber, G. Rünger in Computational Materials Science
    Chapter
  20. Real-Space Renormalization and Energy-Level Statistics at the Quantum Hall Transition

    We review recent applications of the real-space renormalization group (RG) approach to the integer quantum Hall (QH) transition. The RG approach,...
    Rudolf A. Römer, Philipp Cain in Advances in Solid State Physics
    Chapter
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