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采用直流反应磁控溅射法,以高纯Ti为靶材,高纯O2为反应气体,制备了TiO2薄膜.研究了氧气流量对薄膜结晶取向、表面形貌和光学性能的影响.研究发现,TiO2薄膜主要呈锐钛矿TiO2(101)择优取向,当氧气流量较小时,薄膜中还含有金属Ti(100),氧气流量较大时,薄膜含TiO2(101)和TiO2(004),成多晶态;薄膜的粗糙度和颗粒大小都随氧气流量的增大而增大;薄膜在400~1100nm可见-近红外波段有较高的透射率并且其吸收峰随着氧气流量的增大而红移,当氧气流量为5sccm时,平均透射率最高. 相似文献
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报道了利用蓝宝石介质谐振器技术测量MgB2超导薄膜的微波表面电阻Rs sub>、0K时的穿透深度λ(0)和超导能隙Δ(0).λ(0)和Δ(0)的值是通过先测量样品穿透深度λ(T)的变化量Δλ(T),然后由BCS理论模型拟合Δλ(T)的实验数据得到的.测试样 品是利用化学气相沉积技术在MgO(111)基片上制备的c轴织构的MgB2超导薄膜, 薄膜的超导转变温度和转变宽度分别为38K和01K.微波测试结果表明在10K,18GHz下M gB2薄膜的Rs约为100μΩ,可以和高质量的YBCO薄膜的Rs值相比拟;BCS理论拟合得到的MgB2超导薄膜的λ(0)=102nm,Δ(0)=113k Tc. 相似文献
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Self-injection length in La0.7Ca0.3MnO3-YBa2Cu3O7-δ ferromagnet-superconductor multilayer thin films
We have carried out extensive studies on the self-injection problem in barrierless heterojunctions between La0.7Ca0.3MnO3 (LCMO) and YBa2Cu3O7-δ (YBCO) thin films. The heterojunctions were formed in situ by sequentially growing LCMO and YBCO films on 〈100〉 LaAlO3 (LAO) substrate using a pulsed laser deposition (PLD) system. YBCO micro-bridges with 64 μm width were patterned both on
the LAO (control) and LCMO side of the substrate. Critical current, I
c, was measured at 77 K on both the control side as well as the LCMO side for different YBCO film thickness. It was observed
that while the control side showed a J
c of ∼ 2 × 106 A/cm2, the LCMO side showed about half the value for the same thickness (1800 ?). The difference in J
c indicates that a certain thickness of YBCO has become ‘effectively’ normal due to self-injection. From the measurement of
J
c at two different thicknesses (1800 ? and 1500 ?) of YBCO films both on the LAO as well as the LCMO side, the value of self-injection
length (at 77 K) was estimated to be ∼ 900 ?. To the authors’ best knowledge, this is the first time that self-injection length
has been quantified. A control experiment carried out with LaNiO3 deposited by PLD on YBCO did not show any evidence of self-injection. 相似文献
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本文采用顶部籽晶熔渗方法(TSIG), 研究了不同粒径纳米Y2Ba4CuBiOy粒子对单畴YBCO超导块材的生长形貌、微观结构及其磁悬浮力的影响.实验所用纳米Y2Ba4CuBiOy粉体的平均粒度分别为283.0 nm, 170.4 nm以及82.5 nm, 每种粉体在YBCO超导块材中的含量均为2 wt%. 研究结果表明: 在掺杂量为2 wt%的情况下, Y2Ba4CuBiOy粉体的粒度并不影响样品的宏观形貌, 均可制备出单畴YBCO块材; 并且成功地将纳米Y2Ba4CuBiOy粒子引入单畴YBCO块材中, 且使其均匀分布, 但样品中的Y2Ba4CuBiOy粒子均小于其初始粉体的粒度, 分别减小到270 nm, 150 nm和50 nm; 随着Y2Ba4CuBiOy粉体初始粒度的减小, 样品的磁悬浮力逐渐增大, 分别为10 N, 17 N, 22 N. 该结果为进一步研究纳米磁通钉扎中心的引入方法及提高YBCO超导块材的性能有重大意义. 相似文献