1,721,096 research outputs found
Review Report for the "PegasusLong" application to the Research Foundation Flanders - FWO- Belgium
Mean-field theory simulations of unconventional superconductors. Project submitted to FWO by the applicant Juha Jaykka.
Application number: 1203013
Instituto Nacional de Ciencia e Tecnologia 1
Progetto per la realizzazione di un centro di ricerca a network dello stato del Brasile. (Instituto Nacional
Institutos Nacionais de Ciencia e Tecnologia 2
Progetto scientifico per il finanziamento di un centro di ricerca a network dello stato del Brasile 2
Superconducting Science and Technologies Focus Issue on Multicomponent Superconductivity
The scope of this issue is broader than just bulk multiband superconductors, and comprises other forms of multicomponent superconductivity, e.g. one found in artificial multicomponent coherent systems, or superconducting materials with multiple competing orders, a complexity certainly present in many copper-oxide, iron-arsenide, and heavy-fermion superconductors. Even elementary single-band superconductors are of interest, since they can become effectively multiband in samples confined to the nanoscale, in an almost unexplored regime of multiband superconductivity due to quantum confinement. Finally, we hope that this special issue will provide a snapshot of the current state of the understanding of multicomponent superconductivity in a wide range of materials, and a roadmap for further investigations in this booming field
Editorial Board di Scientific Reports, Nature Publishing Group
Membro Editorial Board della rivista scientifica internazionale
Scientfic Reports (Nature Publishing Group). Rivista di classe A,
Impact factor 5,578
http://www.nature.com/srep/about/editorial-boar
Review report for the "New Research Project" for the FWO (Research Foundation of Flanders - Belgium).
Tuning superconductiviy by electric field.
Application number: G015413
Occhio ai Superconduttori
Nuovi materiali sfruttano al massimo la corrente elettrica. Treni che "volano", cavi salva energia, strumenti per vedere dentro il cervello o dentro gli atomi. E tutto grazie a materiali molto particolari
Testing cellular automata interpretation of quantum mechanics in carbon nanotubes and superconductivity
Cellular Automata (CA) are represented at an effective level as intrinsic periodic phenomena, classical in the essence, reproducing the complete coherence (perfect recurrences) associated to pure quantum behaviours in condensed matter systems. By means of this approach it is possible to obtain a consistent, novel derivation of SuperConductivity (SC) essential phenomenology and of the peculiar quantum behaviour of electrons in graphene physics and Carbon Nanotubes (CNs), in which electrons cyclic dynamics simulate CA. In this way we will derive, from classical arguments, the essential electronic properties of these or similar graphene systems, such as energy bands and density of states. Similarly, in the second part of the paper, we will derive the fundamental phenomenology of SC by means of fundamental quantum dynamics and geometrical considerations, directly derived from the CA evolution law, rather than on empirical microscopical characteristics of the materials as in the standard approaches. This allows for a novel heuristic interpretation of the related gauge symmetry breaking and of the occurrence of high temperature superconductivity by means of simple considerations on the competition of quantum recurrence and thermal noise
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