Electric field effect on the transport properties of ultrathin Y0.9Pr0.1Ba2Cu3Oy channels in the insulating phase of superconductor-insulator transition

被引:5
作者
Kabasawa, U [1 ]
Hasegawa, H [1 ]
Fukazawa, T [1 ]
Tarutani, Y [1 ]
Takagi, K [1 ]
机构
[1] HITACHI LTD,CENT RES LAB,KOKUBUNJI,TOKYO 185,JAPAN
关键词
D O I
10.1063/1.364234
中图分类号
O59 [应用物理学];
学科分类号
摘要
The electric field effect on the transport properties of ultrathin Y0.9Pr0.1Ba2Cu3Oy channels was examined as a function of channel thickness and channel length. Samples having a planar YBa2Cu3Ox ultrathin Y0.9Pr0.1Ba2Cu3Oy- YBa2Cu3Ox structure with a fate electrode on the backside of their SrTiO3 substrate were used. The channel layer exhibited superconducting properties when its thickness was more than 9 nm, whereas channels less than 7.5 nm thick were in the insulating phase of the superconductor-insulator transition. The modulation ratio of the conductance of the insulating (I)-phase channels was a few orders of magnitude higher than the modulation ratio of the carrier density. The field-effect mobility increased with increasing channel thickness when the film was in the insulating phase. The sheet conductance of channels shorter than 10 mu m was higher than that of a 100-mu m-long channel of the same thickness due to a size effect on the transport of the I-phase Y0.9Pr0.1Ba2Cu3Oy channel. The field-effect mobility was also enhanced by the size effect. These results imply that the performance of possible field-effect transistors with high-temperature superconductors may be much improved by utilizing an I-phase channel whose length is short enough for the size effect to be evident. (C) 1997 American Institute of Physics.
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页码:2302 / 2307
页数:6
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