脉冲激光沉积
材料科学
硫系化合物
结晶度
激光器
沉积(地质)
基质(水族馆)
化学计量学
薄膜
光电子学
分析化学(期刊)
复合材料
纳米技术
光学
化学
生物
古生物学
海洋学
地质学
色谱法
有机化学
沉积物
物理
作者
Shaojing Mou,Jiachao Ye,Rongji Zhu,Ruo-Jie Li,Linfei Liu,Yijie Li
摘要
Abstract For mass production, a high deposition rate is necessary. A powerful approach is to deposit Fe(Se, Te) (FST) superconducting films at a high laser repetition rate by pulsed laser deposition. Hence, the FST films were grown on flexible metallic tapes using pulsed laser deposition at different laser repetition rates to explore the effect of laser repetition rate on the properties. It was found that as the laser repetition rate increases, the crystallinity and stoichiometry of FST films deteriorate, resulting in a degeneration in superconductivity. The critical temperature of the FST film deposited at a high repetition rate of 120 Hz dropped to 12.89 K. Furthermore, high‐performance FST film was successfully deposited at 120 Hz by increasing the substrate temperature with = 16.96 K and = 18.32 K. The self‐field critical current density can reach 1.3 MA/cm 2 at 4.2 K. The analysis of the pinning mechanism reveals that normal surface pinning centers play a dominant part in the FST film and are independent of the temperature. The collective pinning theory states that the FST film exhibits δ l pinning. The results may offer valuable information for rapid deposition of FST‐coated conductors for industrial production.
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