HIGH-TEMPERATURE SUPERCONDUCTING MULTILAYERS AND HETEROSTRUCTURES GROWN BY ATOMIC LAYER-BY-LAYER MOLECULAR-BEAM EPITAXY

被引:104
作者
ECKSTEIN, JN
BOZOVIC, I
机构
[1] E. L. Ginzton Research Center, Varian Associates, Palo Alto
来源
ANNUAL REVIEW OF MATERIALS SCIENCE | 1995年 / 25卷
关键词
HIGH-TEMPERATURE SUPERCONDUCTOR; JOSEPHSON JUNCTION; MOLECULAR BEAM EPITAXY; SUPERLATTICE; MULTILAYERS; PROXIMITY EFFECT; TUNNELING; INTERFACE;
D O I
10.1146/annurev.ms.25.080195.003335
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Atomic layer-by-layer molecular beam epitaxy (ALL-MBE) of high-temperature superconductors (HTSC) and other complex oxides has been developed. Thin films with atomically flat surfaces and abrupt interfaces can be produced an atomic layer at a time. Samples are engineered by stacking molecular layers of different compounds, by adding or omitting atomic monolayers, and by doping within specified monolayers. Novel artificial HTSC compounds such as Bi2Sr2Ca7Cu8Ox (2278), as well as various heterostructures, have been synthesized in this way. This unique synthetic capability has allowed several fundamental physics issues, such as the dimensionality of the HTSC state, long-range proximity effects, resonant tunneling with a specified number of hops, etc, to be addressed. Trilayer Josephson junctions with uniform and reproducible properties have been fabricated; phase-locked operation of two junctions has also been demonstrated. Finally, titanate slabs only 4-Angstrom thick have been grown without pin-holes and shown to provide tunneling barriers for c-axis transport.
引用
收藏
页码:679 / 709
页数:31
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