Measurement of space charge density distributions and dielectric resonance enhancement of beam deflection properties of KTN crystal

IF 9.6 1区 材料科学 Q1 CHEMISTRY, PHYSICAL Journal of Materiomics Pub Date : 2025-05-01 Epub Date: 2024-06-27 DOI:10.1016/j.jmat.2024.04.017
Pan Chen , Wendie Chen , Shuo Zhang , Jianwei Zhang , Jianxing Shen , Bing Liu , Xuping Wang
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Abstract

In recent years, potassium tantalum niobate (KTN) electro-optical deflection devices have gained considerable attention because of their notable advantages, such as large deflection angles, low operational voltage requirements, and compact dimensions. This study uses the phase-shifted interferometric optical path to characterize the influence of direct current (DC) voltage on charge density. An interferogram is acquired using the four-step phase-shifting technique, enabling the calculation of phase delays and deducing the variation in charge density. Experimental results demonstrate that the charge density near the cathode increases with an increase in DC voltage. Subsequently, we utilize the frequency dependence of the dielectric constant of the KTN crystal on the electric field. The dielectric constant can be enhanced when the characteristic frequency of the motion of the polar nanoscale region matches the frequency of the electric field. This field-induced enhancement effect improves the beam deflection performance of the KTN crystal. Application requirements in the field of high-speed random scanning can be realized through the mechanism of the KTN crystal co-acting with DC and alternating current electric fields.

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KTN晶体空间电荷密度分布的测量及光束偏转特性的介电共振增强
近年来,铌钽酸钾(KTN)光电偏转器件因其偏转角度大、工作电压要求低、尺寸紧凑等显著优点而受到广泛关注。本研究采用相移干涉光路来表征直流电压对电荷密度的影响。利用四步移相技术获得干涉图,计算相位延迟并推导电荷密度的变化。实验结果表明,阴极附近的电荷密度随着直流电压的升高而增大。随后,我们利用了KTN晶体的介电常数对电场的频率依赖性。当极性纳米区运动的特征频率与电场频率相匹配时,介电常数可以得到提高。这种场致增强效应提高了KTN晶体的光束偏转性能。通过KTN晶体与直流和交流电场的协同作用机制,可以实现高速随机扫描领域的应用需求。
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来源期刊
Journal of Materiomics
Journal of Materiomics Materials Science-Metals and Alloys
CiteScore
14.30
自引率
6.40%
发文量
331
审稿时长
37 days
期刊介绍: The Journal of Materiomics is a peer-reviewed open-access journal that aims to serve as a forum for the continuous dissemination of research within the field of materials science. It particularly emphasizes systematic studies on the relationships between composition, processing, structure, property, and performance of advanced materials. The journal is supported by the Chinese Ceramic Society and is indexed in SCIE and Scopus. It is commonly referred to as J Materiomics.
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