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Dive into the research topics where Jose A. Alarco is active.

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Featured researches published by Jose A. Alarco.


Applied Physics Letters | 1991

Weak links and dc SQUIDS on artificial nonsymmetric grain boundaries in YBa2Cu3O7−δ

Z.G. Ivanov; Per-Åke Nilsson; Dag Winkler; Jose A. Alarco; T. Claeson; E.A. Stepantsov; A. Ya. Tzalenchuk

We have studied weak links and dc–SQUIDs made from pulsed laser deposited YBa2Cu3O7−δ thin films on Y–ZrO2 bicrystal substrates. The transport properties of the weak links were studied as a function of the misorientation angle (θ) between the two halves of the bicrystal and an exponential dependence of the weak link critical current density was observed for angles up to 40° at 77 K. Josephson effects with clear microwave and magnetic field responses were observed. An optimum dc–SQUID performance at 77 K was obtained for θ=32°. At this temperature, we achieved a periodic magnetic field response with a modulation depth of 12 μV.


Materials Letters | 1998

Synthesis and characterisation of nanoscale magnesium oxide powders and their application in thick films of Bi2Sr2CaCu2O8

A. Bhargava; Jose A. Alarco; Ian D.R. Mackinnon; David Page; Alexander Ilyushechkin

Nanoscale MgO powder was synthesized from magnesite ore by a wet chemical method. Acid dissolution was used to obtain a solution from which magnesium containing complexes were precipitated by either oxalic acid or ammonium hydroxide, The transformation of precipitates to the oxide was monitored by thermal analysis and XRD and the transformed powders were studied by electron microscopy. The MgO powders were added as dopants to Bi2SrCa2CuO8 powders and high temperature superconductor thick films were deposited on silver. Addition of suitable MgO powder resulted in increase of critical current density, J(c), from 8,900 Acm(-2) to 13,900 Acm(-2) measured at 77 K and 0 T. The effect of MgO addition was evaluated by XRD, electron microscopy and critical current density measurements


Ultramicroscopy | 1993

Microstructure of an artificial grain boundary weak link in an YBa2Cu3O7−σ thin film grown on a (100)(110), [001]-tilt Y-ZrO2 bicrystal

Jose A. Alarco; Eva Olsson; Z. G. Ivanov; Per-Åke Nilsson; Dag Winkler; E.A. Stepantsov; A. Ya. Tzalenchuk

Abstract The microstructure of an artificial grain boundary in an YBa 2 Cu 3 O 7-σ (YBCO) thin film grown on a (100)(110), [001]-tilt yttria-stabilized-zirconia (YSZ) bicrystal substrate has been studied using transmission electron microscopy (TEM). The orientation relationship between the YBCO film and the YSZ substrate was [001] YBCO ‖[001] YSZ and [110] YBCO ‖[100] YSZ for each half of the bicrystal film. However, the exact boundary geometry of the bicrystal substrate was not transferred to the film. The substrate boundary was straight while the film boundary was wavy. In several cases there was bending of the lattice confined within a distance of a few basal-plane lattice spacings from the boundary plane and microfaceting. No intergranular secondary phase was observed but about 25% of the boundary was covered by c -axis-tilted YBCO grains and a -axis-oriented grains, both of which were typically adjacent to CuO grains or surrounded by a thin Cu-rich amorphous layer.


Applied Physics Letters | 1992

Effects of substrate temperature on the microstructure of YBa2Cu3O7−δ films grown on (001) Y‐ZrO2 substrates

Jose A. Alarco; G. Brorsson; Z. G. Ivanov; Per-Åke Nilsson; Eva Olsson; M. Löfgren

High-quality YBa2Cu3O7-δ films grown on (001) single-crystal Y-ZrO2 substrates by pulsed laser deposition have been studied as a function of substrate temperature using transmission electron microscopy. A transition from epitaxial films to c-axis oriented polycrystalline films was observed at 740°C. An intermediate, polycrystalline, BaZrO3 layer was formed from a reaction between the film and the substrate. A dominant orientation relationship of [001] YBCO//[001]int. layer//[001]YSZ and [110] YBCO//[110]int. layer//[100]YSZ was observed. The formation of grain boundaries in the films resulted in an increased microwave surface resistance and a decreased critical-current density. The superconducting transition temperature remained fairly constant at about 90 K.


Journal of Applied Physics | 1994

Early stages of growth of YBa2Cu3O7−δ high Tc superconducting films on (001) Y‐ZrO2 substrates

Jose A. Alarco; G. Brorsson; Håkan Olin; Eva Olsson

The early stages of growth of high quality YBa2Cu3O7−δ (YBCO) films grown on (001) Y‐ZrO2 (YSZ) substrates by pulsed laser deposition have been studied using a combination of atomic force microscopy and transmission electron microscopy. A one unit cell thick YBCO layer and relatively large CuO particles formed in the initial stages. Additional YBCO grew on top of the first layer in the form of one or a few unit cell high c‐axis oriented islands about 30 nm in diameter. The rounded islands subsequently coalesced into faceted domains. Elongated Y2BaCuO5 particles nucleated after the first layer of YBCO. A highly textured BaZrO3 layer formed between the YSZ and the YBCO with a cube‐on‐cube dominant orientation relationship with respect to the YBCO film.


Physica C-superconductivity and Its Applications | 1995

Microstructure and properties of artificial grain boundaries in epitaxial YBA2Cu3O7−δ thin films grown on [001] tilt YZrO2 bicrystals

Jose A. Alarco; Eva Olsson; Z. G. Ivanov; Dag Winkler; E.A. Stepantsov; O.I. Lebedev; Alexander L. Vasiliev; A. Ya. Tzalenchuk; N.A. Kiselev

Abstract The microstructure of artificial grain boundaries in YBa2Cu3O7−δ (YBCO) thin films grown on [001] tilt YZrO2 (YSZ) bicrystal substrates has been characterized using transmission electron microscopy and atomic force microscopy. Despite a relatively straight morphology of the substrate boundaries, the film boundaries were wavy. The waviness was a result of the combined effects of grooving at the substrate boundaries prior to the film deposition and an island-growth mechanism for YBCO on YSZ substrates. The dihedral angle of the groove walls varied with the misorientation angle and depended on the symmetry of the substrate boundary. The amplitudes of the film boundary waviness compared well with the widths of the grooves. In addition, the grooves induced local bending of the YBCO lattice planes and additional tilt components perpendicular to the c-axis close to the film boundaries.


Journal of Applied Physics | 1994

YBA2CU3O7-X FILMS ON YTTRIA-STABILIZED ZRO2 SUBSTRATES : INFLUENCE OF THE SUBSTRATE MORPHOLOGY

G. Brorsson; Eva Olsson; Z. G. Ivanov; E. A. Stepantsov; Jose A. Alarco; Yu. A. Boikov; T. Claeson; P. Berastegui; V. Langer; M. Löfgren

c-axis-oriented YBa2Cu3O7-x (YBCO) thin films were laser deposited on (001) yttria-stabilized ZrO2 (YSZ) substrates with different surface morphologies. The in-plane orientation of the films on smooth substrates was sensitive to the deposition conditions, often resulting in mixed orientations. However, a strongly dominating [110] YBCO//[110]YSZ orientation was obtained at a deposition temperature of 770°C. Films on substrates with surface steps, induced by depositing a homoepitaxial buffer layer or by thermally annealing the substrate, had a [110]YBCO//[100]YSZ orientation when deposited at the same temperature. It was concluded that the [110]YBCO//[100] YSZ orientation was promoted by a graphoepitaxial mechanism. Films prepared under identical conditions on smooth and stepped substrates grew with extended c axes on the former. It is proposed that the extension can be induced by disorder, invoked by a low oxygen pressure and a low density of adsorption sites. The disorder may be eliminated by either an increase of the oxygen pressure or an increase of the density of adsorption sites in the form of steps. The film microstructure influenced the microwave surface resistance, which was similar for films with one exclusive in-plane orientation and higher for films with mixed orientations. The films on the stepped surfaces had superior superconducting properties; inductive measurements gave a Tc onset of 88 K, a ΔT(90%-10%) c of 0.2 K, and the transport jc was 1.5×106 A/cm2 at 83 K, for films on substrates with homoepitaxial buffer layers.


Physica C-superconductivity and Its Applications | 2000

Effects of PtO2 and CeO2 additives on the microstructures of the quenched melts of Y–Ba–Cu–O materials

James D. Riches; Jose A. Alarco; John Barry

The microstructures of the quenched melts of samples of Y123 and Y123+15-20 mol% Y211 with PtO2 and CeO2 additives have been examined with optical microscopy, Scanning Electron Microscopy (SEM), Energy Dispersive X-ray Spectrometry (EDS) and X-ray Diffractometry (XRD). Significantly higher temperatures are required for the formation of dendritic or lamellar eutectic patterns throughout the samples with PtO2 and CeO2 additives as compared to samples without additives. The BaCuO2 (BCl) phase appears first in solid form and, instead of rapidly melting, is slowly dissolving or decomposing in the oxygen depleted melt. PtO2 and CeO2 additives slow down or shift to higher temperatures the dissolution or decomposition process of BCl. A larger fraction of BCl in solid form explains why samples with additives have higher viscosities and hence lower diffusivities than samples without additives. There is also a reduction in the Y solubility to about half the value in samples without additives. The mechanism that limits the Ostwald ripening of the Y211 particles is correlated to the morphology of the quenched partial melt. It is diffusion controlled for a finely mixed morphology and interface-controlled when the melt quenches into dendritic or lamellar eutectic patterns. The change in the morphology of the Y211 particles from blocky to acicular is related to an equivalent undercooling of the Y-Ba-Cu-O partial melt, particularly through the crystallization of BCl.


Journal of Materials Research | 1997

Microstructural characterization of quenched melt-textured YBa 2 Cu 3 O 7−δ materials

Jose A. Alarco; E. Olsson; S.J. Golden; A. Bhargava; T. Yamashita; John Barry; Ian D.R. Mackinnon

The microstructure of YBa2Cu3O7-δ (YBCO) materials, melt-textured in air and quenched from the temperature range 900-990°C, has been characterized using a combination of x-ray diffractometry, optical microscopy, scanning electron microscopy, transmission electron microscopy, and energy dispersive x-ray spectrometry. BaCu2O2 and BaCuO2 were found to coexist in samples quenched from the temperature range 920-960°C. The formation of BaCu2O2 preceded the formation of YBCO. Once the YBCO had formed, BaCu2O2 was present at the solidification front filling the space between nearly parallel platelets of YBCO. Large Y2BaCuO5 particles at the solidification front appeared divided into smaller ones as a result of their dissolution in the liquid that quenched as BaCu2O2.


Superconductor Science and Technology | 1991

Properties of artificial grain boundary weak links grown on Y-ZrO2 bicrystals

Z. G. Ivanov; Per-Åke Nilsson; Dag Winkler; Jose A. Alarco; G. Brorsson; T. Claeson; E.A. Stepantsov; A.Ya. Tzalenchuk

Weak links were fabricated by pulsed laser deposition of YBa2Cu3Ox thin films on Y-ZrO2 bicrystal substrates. They were formed by transferring the bicrystal boundary into the epitaxial film during the film growth. Their properties were determined by the misorientation angle ( theta ) between the two halves of the bicrystal. The transport properties of the weak links were studied as a function of theta and an exponential dependence of the weak link critical current density was observed for angles up to 45 degrees . Clear Josephson effects with good microwave and magnetic field response were observed.

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Ian D.R. Mackinnon

Queensland University of Technology

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John Barry

University of Queensland

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G. Brorsson

Chalmers University of Technology

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A. Bhargava

University of Queensland

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Dag Winkler

Chalmers University of Technology

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Eva Olsson

Chalmers University of Technology

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T. Yamashita

University of Queensland

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Per-Åke Nilsson

Chalmers University of Technology

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