Author:
Chaluvadi Sandeep Kumar,Punathum Chalil Shyni,Mazzola Federico,Dolabella Simone,Rajak Piu,Ferrara Marcello,Ciancio Regina,Fujii Jun,Panaccione Giancarlo,Rossi Giorgio,Orgiani Pasquale
Abstract
AbstractWe report on the growth and characterization of epitaxial YBa$$_{2}$$
2
Cu$$_{3}$$
3
O$$_{7-\delta }$$
7
-
δ
(YBCO) complex oxide thin films and related heterostructures exclusively by Pulsed Laser Deposition (PLD) and using first harmonic Nd:Y$$_{3}$$
3
Al$$_{5}$$
5
O$$_{12}$$
12
(Nd:YAG) pulsed laser source ($$\lambda$$
λ
= 1064 nm). High-quality epitaxial YBCO thin film heterostructures display superconducting properties with transition temperature $$\sim$$
∼
80 K. Compared with the excimer lasers, when using Nd:YAG lasers, the optimal growth conditions are achieved at a large target-to-substrate distance d. These results clearly demonstrate the potential use of the first harmonic Nd:YAG laser source as an alternative to the excimer lasers for the PLD thin film community. Its compactness as well as the absence of any safety issues related to poisonous gas represent a major breakthrough in the deposition of complex multi-element compounds in form of thin films.
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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