论文标题
稀土钙钛矿中的交流频率切换相关运输
AC-frequency switchable correlated transports in rare-earth perovskite nickelates
论文作者
论文摘要
虽然以前确认电子相关性可以触发超出常规直流电流(DC)电子传输(例如金属对隔离剂过渡,不良金属,热敏电阻),但它们对交替电流(AC)传输的影响很大程度上被忽略了。本文中,我们通过简单地利用其对AC频率(FAC)的电子响应(FAC)来证明与D波段相关的稀土镍(Renio3)薄膜的电子功能中的主动法规。在靠近边缘X射线吸收良好的结构分析的辅助下,我们发现了Renio3的库仑粘度的阳性温度依赖性,从而缓解了AC阻抗。观察到在附近温度下测得的R(真实)-FAC之间进行了区分的交联,与常规氧化物不同。它可以通过电子角度通过fAC,在没有变化的材料或设备结构的情况下通过FAC来实现Renio3,NTCR-,Tdelta-和Ptcr-热敏电阻的相关运输的主动调节性。 Tdelta-FAC关系可以通过RE组成和界面菌株进一步广泛调整。在Renio3中发现的交流频率敏感性带来了一种新的自由,以调节和切换设备的工作状态超出当前的半导体技术。它开辟了一个新的范式,用于丰富新型电子应用,以迎合自动传输或在感应温度和频率中的人工智能。
Whilst electron correlations were previously recognized to trigger beyond conventional direct current (DC) electronic transportations (e.g. metal-to-insulator transitions, bad metal, thermistors), their respective influences to the alternation current (AC) transport are largely overlooked. Herein, we demonstrate active regulations in the electronic functionalities of d-band correlated rare-earth nickelate (ReNiO3) thin films, by simply utilizing their electronic responses to AC-frequencies (fAC). Assisted by temperature dependent near edge X-ray absorption fine structure analysis, we discovered positive temperature dependences in Coulomb viscosity of ReNiO3 that moderates their AC impedance. Distinguished crosslinking among R(Real)-fAC measured in nearby temperatures is observed that differs to conventional oxides. It enables active adjustability in correlated transports of ReNiO3, among NTCR-, TDelta- and PTCR- thermistors, via fAC from the electronic perspective without varying materials or device structures. The TDelta-fAC relationship can be further widely adjusted via Re composition and interfacial strains. The AC-frequency sensitivity discovered in ReNiO3 brings in a new freedom to regulating and switching the device working states beyond the present semiconductor technologies. It opens a new paradigm for enriching novel electronic applications catering automatic transmission or artificial intelligence in sensing temperatures and frequencies.