Infinite layer based superlattices [(BaCuO2)(m)/(CaCuO2)(n)] are a new kind of artificial superconductors with interesting properties both for fundamental comprehension purpose and for future possible applications. The artificial nature of these compounds offers the possibility of analyzing the influence of the structural properties on the superconducting behavior. For example we can study the correlation between the number of CuO2 planes contained in the infinite layer block (CaCuO2) and the transport properties. In this paper, we present transport properties characterization of some thin films of this family containing different number of Cuo(2) planes. Such films have been grown by Pulsed Laser Deposition (PLD) technique. In order to inv...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Magnetic and electrical transport properties of artificially layered [(BaCuO2)(2)/(CaCuO2)(2)](N) su...
The development of thin film deposition techniques allowed the growth of new artificial materials le...
Superconducting multilayers, whose growth and structure are determined by the kinetic deposition ins...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
Pulsed-laser deposition and epitaxial stabilization have been effectively used to engineer artificia...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Magnetic and electrical transport properties of artificially layered [(BaCuO2)(2)/(CaCuO2)(2)](N) su...
The development of thin film deposition techniques allowed the growth of new artificial materials le...
Superconducting multilayers, whose growth and structure are determined by the kinetic deposition ins...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
The superconducting properties of (CaCuO2)n/ (SrTiO3)m artificial superlattices have been investigat...
Pulsed-laser deposition and epitaxial stabilization have been effectively used to engineer artificia...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...
Pulsed laser deposition in a molecular beam epitaxy environment has been used to deposit high qualit...