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Thickness, humidity, and polarization dependent ferroelectric switching and conductivity in Mg doped lithium niobate

机译:掺镁铌酸锂中厚度,湿度和极化相关的铁电开关和电导率

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摘要

Mg doped lithium niobate (Mg:LN) exhibits several advantages over undoped LN such as resistance to photorefraction, lower coercive fields, and p-type conductivity that is particularly pronounced at domain walls and opens up a range of applications, e.g., in domain wall electronics. Engineering of precise domain patterns necessitates well founded knowledge of switching kinetics, which can differ significantly from that of undoped LN. In this work, the role of humidity and sample composition in polarization reversal has been investigated under application of the same voltage waveform. Control over domain sizes has been achieved by varying the sample thickness and initial polarization as well as atmospheric conditions. In addition, local introduction of proton exchanged phases allows for inhibition of domain nucleation or destabilization, which can be utilized to modify domain patterns. Polarization dependent current flow, attributed to charged domain walls and band bending, demonstrates the rectifying ability of Mg:LN in combination with suitable metal electrodes that allow for further tailoring of conductivity.
机译:掺杂镁的铌酸锂(Mg:LN)与未掺杂的LN相比具有多个优点,例如抗光折变,较低的矫顽场和p型电导率,这在畴壁处尤为明显,并开拓了一系列应用,例如在畴壁中电子产品。要设计精确的磁畴模式,就必须具备扎实的开关动力学知识,这与未掺杂的LN可能有很大的不同。在这项工作中,已经研究了在相同电压波形下湿度和样品成分在极化反转中的作用。通过改变样品厚度和初始极化以及大气条件,可以实现对畴尺寸的控制。另外,质子交换相的局部引入允许抑制域成核或不稳定,这可用于修饰域模式。归因于带电畴壁和能带弯曲的极化相关电流显示了Mg:LN与合适的金属电极结合的整流能力,该金属电极允许进一步调整电导率。

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