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Engineered reactive cosputtered SmxZr1–xOy thin films as buffer layers for YBa2Cu3O7−δ coated conductors

Published online by Cambridge University Press:  03 March 2011

L. Stan*
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
P.N. Arendt
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
I.O. Usov
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
H. Wang
Affiliation:
Texas A&M University, College Station, Texas 77843
S.R. Foltyn
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
B. Maiorov
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
J.R. Groves
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
R.F. DePaula
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
Y. Li
Affiliation:
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
*
a) Address all correspondence to this author. e-mail: [email protected]
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Abstract

This study shows that biaxially textured SmxZr1−xOy (SZO) with a wide range of compositions (0.06 < x < 0.75) can be grown directly on ion-beam-assisted deposition (IBAD) MgO template using reactive cosputtering. The SZO crystal structure can be changed, and the lattice parameter can be tailored (from 5.23 to 5.49 Å) by changing the composition. We have developed a simplified high-temperature superconducting coated conductor using SZO as the buffer layer. YBa2Cu3O7−δ (YBCO) films grown by pulsed laser deposition on the SZO buffered IBAD MgO have self-field critical current densities (Jc) in the 2–4 MA/cm2 range. The in-field measurements demonstrate that high-quality YBCO films can be grown on SZO buffered IBAD MgO. The present results are especially important because they were obtained on coated conductors with the simpler architecture by eliminating the additional homoepitaxial layer of MgO. This translates in faster production and lower manufacturing cost.

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Articles
Copyright
Copyright © Materials Research Society 2007

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References

REFERENCES

1Jia, Q.X., Foltyn, S.R., Arendt, P.N., Groves, J.R., Holesinger, T.G., Groves, J.R., Hawley, M.E., and Lu, P.: Role of SrRuO3 buffer layers on the superconducting properties of YBa2Cu3O7 films grown on polycrystalline metal alloy using a biaxially oriented MgO template. Appl. Phys. Lett. 81, 4571 (2002).CrossRefGoogle Scholar
2Foltyn, S.R., Arendt, P.N., Jia, Q.X., Wang, H., MacManus-Driscoll, J.L., Kreiskott, S., DePaula, R.F., Stan, L., Groves, J.R., and Dowden, P.C.: Strongly coupled critical current density values achieved in Y1Ba2Cu3O7-δ coated conductors with near-single-crystal texture. App. Phys. Lett. 82, 4519 (2003).Google Scholar
3Paranthaman, M., Aytug, T., Christen, D.K., Arendt, P.N., Foltyn, S.R., Groves, J.R., Stan, L., DePaula, R.F., Wang, H., and Holesinger, T.G.: Growth of thick YBa2Cu3O7−δ films carrying a critical current of over 230 A/cm on single LaMnO3-buffered ion-beam-assisted deposition MgO substrates. J. Mater. Res. 18, 2055 (2003).Google Scholar
4Matias, V., Gibbons, B.J., Findikoglu, A.T., Dowden, P.C., Sullard, J., and Coulter, J.Y.: Continuous fabrication of IBAD-MgO based coated conductors. IEEE Trans. Appl. Supercond. 15, 2735 (2005).CrossRefGoogle Scholar
5Wang, H., Foltyn, S.R., Arendt, P.N., Jia, Q.X., MacManus-Driscoll, J.L., Stan, L., Li, Y., Zhang, X., and Dowden, P.C.: Microstructure of SrTiO3 buffer layers and its effects on superconducting properties of YBa2Cu3O7−δ coated conductors. J. Mater. Res. 19, 1869 (2004).Google Scholar
6Glushkova, V.B., Sazonova, L.V., and Hanic, F.: Lattice parameters of cubic solid solutions in the systems uR2O3–(1−u)MO2. Ceram. Int. 4, 176 (1978).CrossRefGoogle Scholar
7Arendt, P.N., Foltyn, S.R., Civale, L., DePaula, R.F., Dowden, P.C., Groves, J.R., Holesinger, T.G., Jia, Q.X., Kreiskott, S., Stan, L., Usov, I., Wang, H., and Coulter, J.Y.: High critical current YBCO coated conductors based on IBAD MgO. Physica C 412, 795 (2004).Google Scholar
8 JCPDS No. 78-1302, 78-1291, and 78-1285. International Center for Diffraction Data: Newton Square, PA, 1997.Google Scholar
9Narayan, J. and Larson, B.C.: Domain epitaxy: A unified paradigm for thin film growth. J. Appl. Phys. 93, 278 (2003).CrossRefGoogle Scholar