论文标题
WTE2 Josephson Junction的电流相关关系
Current-phase relation of a WTe2 Josephson junction
论文作者
论文摘要
当将拓扑绝缘子纳入约瑟夫森交界处时,该系统被预测揭示了分数约瑟夫森效应,具有4 $π$ - 周期性的电流相关关系。在这里,我们报告了通过不对称鱿鱼的$4π$周期开关电流的测量,该鱿鱼由高阶拓扑绝缘子WTE $ _2 $形成。与既定的意见相反,我们表明,临界电流中的高不对称性和可忽略不计的电感本身不足以可靠地衡量流相关关系。取而代之的是,我们发现我们的测量受到源自交界处内部自我形成的pdte $ _ {\ text {x}} $的其他电感的重大影响。因此,我们开发了一种方法,以数值恢复系统的电流关系,并找到$ 1.5 \,μ\ text {m} $长连接处,以在短弹道限制中最好地描述。我们的结果突出了微妙的电感效应的复杂性,这些效应可能会导致运输测量中的误导性拓扑特征。
When a topological insulator is incorporated into a Josephson junction, the system is predicted to reveal the fractional Josephson effect with a 4$π$-periodic current-phase relation. Here, we report the measurement of a $4π$-periodic switching current through an asymmetric SQUID, formed by the higher-order topological insulator WTe$_2$. Contrary to the established opinion, we show that a high asymmetry in critical current and negligible loop inductance are not sufficient by themselves to reliably measure the current-phase relation. Instead, we find that our measurement is heavily influenced by additional inductances originating from the self-formed PdTe$_{\text{x}}$ inside the junction. We therefore develop a method to numerically recover the current-phase relation of the system and find the $1.5\,μ\text{m}$ long junction to be best described in the short ballistic limit. Our results highlight the complexity of subtle inductance effects that can give rise to misleading topological signatures in transport measurements.