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Quantitative Local Probing of Polarization with Application on HfO2-Based Thin Films.

Authors :
Owoong Kwon
Seunghun Kang
Sanghyun Jo
Yun Do Kim
Hee Han
Yeehyun Park
Xiaoli Lu
Woo Lee
Jinseong Heo
Alexe, Marin
Yunseok Kim
Source :
Small Methods; 11/15/2021, Vol. 5 Issue 11, p1-6, 6p
Publication Year :
2021

Abstract

Owing to their switchable spontaneous polarization, ferroelectric materials have been applied in various fields, such as information technologies, actuators, and sensors. In the last decade, as the characteristic sizes of both devices and materials have decreased significantly below the nanoscale, the development of appropriate characterization tools became essential. Recently, a technique based on conductive atomic force microscopy (AFM), called AFMpositive- up-negative-down (PUND), is employed for the direct measurement of ferroelectric polarization under the AFM tip. However, the main limitation of AFM-PUND is the low frequency (i.e., on the order of a few hertz) that is used to initiate ferroelectric hysteresis. A significantly higher frequency is required to increase the signal-to-noise ratio and the measurement efficiency. In this study, a novel method based on high-frequency AFM-PUND using continuous waveform and simultaneous signal acquisition of the switching current is presented, in which polarization–voltage hysteresis loops are obtained on a highpolarization BiFeO<subscript>3</subscript> nanocapacitor at frequencies up to 100 kHz. The proposed method is comprehensively evaluated by measuring nanoscale polarization values of the emerging ferroelectric Hf<subscript>0.5</subscript>Zr<subscript>0.5</subscript>O<subscript>2</subscript> under the AFM tip. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23669608
Volume :
5
Issue :
11
Database :
Complementary Index
Journal :
Small Methods
Publication Type :
Academic Journal
Accession number :
154747054
Full Text :
https://doi.org/10.1002/smtd.202100781