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Titlebook: Electronic and Structural Properties of LaNiO₃-Based Heterostructures; Jennifer Fowlie Book 2019 Springer Nature Switzerland AG 2019 Lanth

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Conclusions and Perspectives,cturing is one of the most tangible ways in which the correlated phases can be manipulated. Emerging from this fascinating intersection of oxide physics and thin film physics are often novel phenomena that can be turned into innovative functionalities. On the other side of the same coin, however, is
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Jennifer FowlieNominated as an outstanding Ph.D. thesis by the University of Geneva, Geneva, Switzerland.Contains a general introduction to the fields of transition metal oxides and of heterostructures as well as th
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Springer Nature Switzerland AG 2019
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Electronic and Structural Properties of LaNiO₃-Based Heterostructures978-3-030-15238-3Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Blockchain and Digital Currency,. Perhaps an important question to address is; how thin is a thin film? In the fundamental research of perovskite oxides, a thin film could be defined as one where the film thickness starts to be on the same order of magnitude as the relevant length scales for the physics, leading to a definition of
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Climate Conditions and Classification,onic and magnetic properties exhibit a particularly clear lattice dependence. The nickelate phase diagram itself is almost always shown with the x-axis representing the structural distortion in one way or another, for example, the Ni–O–Ni bond angle that dictates the orbital overlap.
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Integrated Ground-Based Observing Systemsbeen studied with the notion of high temperature superconductivity as the motivation. As discussed in Sect. 3.6, it was predicted that superlattices that alternate a metallic 1 u.c. layer of LaNiO. with a non-transition metal perovskite oxide band insulator may provide a welcome environment for supe
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