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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Conductivity features of the nanomodified HTSC structures
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Conductivity features of the nanomodified HTSC structures

机译:纳米改性HTSC结构的电导特性

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The transport characteristics of nanostructures consisting of microcrystalline YBa_(2)Cu_(3)O_(7-δ) powder and nanopowder of the same composition have been studied in the nanosecond duration interval of the pulse voltages applied to the nanostructure. An increase in the critical temperature T_(c) of the transition to the superconducting state was established to occur at the 20% nanopowder content. The obtained experimental data was interpreted in terms of the percolation theory. This theory holds that the optimal nanopowder content in the nanomodified material causes a rise of the maximum number of micropowder-nanopowder Josephson’s contacts. An increase in the structure porosity when the content falls off from the optimum, leads to a break-down of a percolation cluster and to a decrease in the T_(c) value; moreover, the temperature range where the transition to the superconducting state takes place, spreads.
机译:在施加到纳米结构的脉冲电压的纳秒持续时间间隔内,研究了由微晶YBa_(2)Cu_(3)O_(7-δ)粉末和相同组成的纳米粉组成的纳米结构的传输特性。过渡到超导状态的临界温度T_(c)被确定在纳米粉末含量为20%时增加。根据渗流理论解释了获得的实验数据。该理论认为,纳米改性材料中最佳的纳米粉含量会导致约瑟夫森微粉-纳米粉接触的最大数量增加。当含量偏离最佳值时,结构孔隙率增加,导致渗滤团簇破裂,T_(c)值降低;此外,发生向超导状态转变的温度范围扩大。

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