Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic
Stress dependence and scaling behavior of subcoercive field dynamic ferroelectric hysteresis were investigated in rhombohedral 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 (0.5PZT-0.5PZN) bulk ceramic with profound relaxor characteristics. The scaling relation of hysteresis area 〈A〉 against freque...
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th-cmuir.6653943832-607192018-09-10T03:48:00Z Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic R. Yimnirun N. Wongdamnern N. Triamnak M. Unruan A. Ngamjarurojana S. Ananta Y. Laosiritaworn Physics and Astronomy Stress dependence and scaling behavior of subcoercive field dynamic ferroelectric hysteresis were investigated in rhombohedral 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 (0.5PZT-0.5PZN) bulk ceramic with profound relaxor characteristics. The scaling relation of hysteresis area 〈A〉 against frequency f, field amplitude E0, and stress for the minor loops takes a form of 〈 A- A=0 〉 f-0.34 E0 3.68 0.35, which is very similar to that of soft and hard lead zirconate titanate ceramics with the same disrupted domains. This study suggests that the domain structures play a significant role in controlling the dynamic hysteresis behavior of ferroelectric materials. © 2008 American Institute of Physics. 2018-09-10T03:48:00Z 2018-09-10T03:48:00Z 2008-12-08 Journal 00218979 2-s2.0-57049154556 10.1063/1.3021287 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=57049154556&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/60719 |
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Physics and Astronomy R. Yimnirun N. Wongdamnern N. Triamnak M. Unruan A. Ngamjarurojana S. Ananta Y. Laosiritaworn Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic |
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Stress dependence and scaling behavior of subcoercive field dynamic ferroelectric hysteresis were investigated in rhombohedral 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 (0.5PZT-0.5PZN) bulk ceramic with profound relaxor characteristics. The scaling relation of hysteresis area 〈A〉 against frequency f, field amplitude E0, and stress for the minor loops takes a form of 〈 A- A=0 〉 f-0.34 E0 3.68 0.35, which is very similar to that of soft and hard lead zirconate titanate ceramics with the same disrupted domains. This study suggests that the domain structures play a significant role in controlling the dynamic hysteresis behavior of ferroelectric materials. © 2008 American Institute of Physics. |
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R. Yimnirun N. Wongdamnern N. Triamnak M. Unruan A. Ngamjarurojana S. Ananta Y. Laosiritaworn |
author_facet |
R. Yimnirun N. Wongdamnern N. Triamnak M. Unruan A. Ngamjarurojana S. Ananta Y. Laosiritaworn |
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R. Yimnirun |
title |
Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic |
title_short |
Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic |
title_full |
Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic |
title_fullStr |
Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic |
title_full_unstemmed |
Stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5Pb (Zr1/2 Ti1/2) O3 -0.5Pb (Zn1/3 Nb2/3) O3 ceramic |
title_sort |
stress dependence and scaling of subcoercive field dynamic hysteresis in 0.5pb (zr1/2 ti1/2) o3 -0.5pb (zn1/3 nb2/3) o3 ceramic |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=57049154556&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/60719 |
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