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Optical and Electrical Properties of Low-Dimensional Ferroelectric Materials and Device Physics of Ferroelectric Thin Film Infrared Focal Plane Arrays

  • YU Jian ,
  • CHU Jun-Hao ,
  • TANG Ding-Yuan
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  • Shanghai Institute of Technical Physics, Chinese Academy of Scienses, Shanghai 200083, China

Received date: 2002-12-04

  Online published: 2003-03-10

Supported by

supported by National Climbing Projects, National Natural Science Foundation of China, Shanghai Natural Science Foundation, and CAS-Pudong foundation

Abstract

First, the grain size effect on ferroelectricity, phase transformation, lattice dynamics, and photoluminescence properties of nanocrystalline BaTiO3 were studied. Second, the orientation mechanism, optical and electrical properties of highly oriented lead zirconate titanate thin film heterostructures prepared by chemical solution methods were studied. Third, the factors determining the performance of monolithic ferroelectric thin film infrared focal plane arrays were investigated using a modeling method.

Cite this article

YU Jian , CHU Jun-Hao , TANG Ding-Yuan . Optical and Electrical Properties of Low-Dimensional Ferroelectric Materials and Device Physics of Ferroelectric Thin Film Infrared Focal Plane Arrays[J]. Journal of University of Chinese Academy of Sciences, 2003 , 20(2) : 254 -259 . DOI: 10.7523/j.issn.2095-6134.2003.2.022

References

[1] J Yu, J H Chu. In:H S Nalwa. Encyclopedia of Nanoscience and Nanotechnology.American Scientific Publishers, 2003 (in press)

[2] J Yu, X J Meng, J L Sun, G S Wang, J H Chu.Mat Res Soc Sym Proc, 2002,718:177~182

[3] J Yu, J L Sun, J H Chu, D Y Tang, Appl Phys Lett, 2000,77:2807~2809

[4] J Yu, J H Chu, M S Zhang. Appl Phys, 2002,A 74:645~647

[5] M S Zhang, J Yu, W C Chen, Z Yin. Prog In Crystal Growth Charact Mater, 2000,40:33

[6] J Yu, W F Zhang, Q Chen, M S Zhang. J Nanjing Univ (Natural Science),1999,35: 126~128

[7] J Yu, J L Sun, X J Meng, Z M Huang, J H Chu, D Y Tang, C Y Jin, G Li, W Y Li, Q Liang. J Appl Phys, 2001,90: 2699~2702

[8] X J Meng, J L Sun, J Yu, H J Ye, S L Guo, J H Chu. Appl Surf Sci, 2001,171:68

[9] G S Wang, J G Cheng, X J Meng, J Yu,Z Q Lai, J Tang, S L Guo, J H Chu, G Li, Q H Lu. Appl Phys Lett, 2001, 78:4172

[10] J Yu, X J Meng, J L Sun, J Chen, G S Wang, J H Chu. (to be prepared)

[11] X J Meng, J L Sun, J Yu, L X Bo, C P Jiang, Q Sun, S L Guo, J H Chu. Appl Phys Lett, 2001, 78:2548

[12] G S Wang, X J Meng, J L Sun, Z Q Lai, J Yu, S L Guo, J G Cheng, J Tang, J H Chu. Appl Phys Lett, 2001, 79:3476~3478

[13] X J Meng, J L Sun, J Yu, H J Ye, S L Guo, J H Chu. Appl Phys, 2001, A 73:323~325

[14] G S Wang, X J Meng, Z Q Lai, J Yu, J L Sun, J G Cheng, J Tang, S L Guo, J H Chu. Appl Phys, 2002, A 74:707~710

[15] J Yu, Z M Huang, X J Meng, J L Sun, J H Chu, D Y Tang. Appl Phys Lett, 2001, 78:793~795

[16] Z M Huang, Z H Zhang, C P Jiang, J Yu, J L Sun, J H Chu, Appl Phys Lett, 2000, 77:3651

[17] J Yu, Y N Ling, J L Sun, X J Meng, J H Chu, D Y Tang. SPIE, 2000, 4086:696

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