周佩珩

周佩珩

周佩珩,女,博士,畢業於中國電子科技大學材料物理與化學專業,現為電子科技大學微電子與固體電子學院教授。

基本介紹

  • 中文名:周佩珩
  • 學位/學歷:博士
  • 性別:女
  • 職稱:教授
研究方向,成就榮譽,代表性論文,

研究方向

低維磁性材料及動態磁化理論
新型低維納米磁性薄膜及結構製備;納米磁體動態磁化機理及模型計算;複合磁性材料理論及電磁套用設計
紅外微納超結構及熱輻射控制技術
基於SPPs的紅外微納超結構設計及製備技術;亞波長金屬周期結構電磁仿真及熱輻射計算
新型電磁超材料
電磁超材料吸波設計及套用技術;電磁結構耦合特性及非線性研究

成就榮譽

IEEE Membership,
教育部新世紀人才(2013),
國防科技進步一等獎(2007),
Excellent Doctor's Degree Thesis of Sichuan Provience,
Reviewer of Shota Rustaveli National Science Foundation,IEEE Trans Mag,Chinese Physics B, et al.

代表性論文

代表性論文
[1] N. Zhang, P. H. Zhou*, D. M. Cheng, X. L. Weng, J. L. Xie, and L. J. Deng, Dual-band absorption of mid-infrared metamaterial absorber based on distinct dielectric spacing layers, Opt. Lett., Vol. 38, pp. 1125-1127, 2013
[2] G. R. Zhang, P. H. Zhou*, H. B. Zhang, L. B. Zhang, J. L. Xie, and L. J. Deng, Analysis and design of triple-band high-impedance surface absorber with periodic diversified impedance, J. Appl. Phys., Vol. 114, pp. 164103, 2013
[3] H. B. Zhang*, P. H. Zhou, H. P. Lu, Y. Q. Xu, D. F. Liang, and L. J. Deng, Resistance selection of high impedance surface absorbers for perfect and broadband absorption, IEEE Trans. Antennas Propag., Vol. 61, pp. 976-979, 2013
[4] N. Zhang, P. H. Zhou*, J. L. Xie, and L. J. Deng, Comparisons of two subwavelength aperture arrays with different lattice structure for light transmission, Optik, Vol. 124, pp. 2401-2405, 2013
[5] D. M. Cheng, J. L. Xie, P. H. Zhou, H. B. Zhang, N. Zhang, and L. J. Deng*, Numerical study of a new negative index material in mid-infrared spectrum, Opt. Express, Vol. 20, No. 23, pp. 25744-25751, 2012
[6] H. B. Zhang, P. H. Zhou, H. P. Lu, Y. Q. Xu, J. L. Xie and L. J. Deng. Soft magnetic film based metamaterial absorber. Electronics Letters, 2012, 48:435
[7] H. B. Zhang, P. H. Zhou, L. W. Deng, J. L. Xie, D. F. Liang and L. J. Deng. Frequency-dispersive resistance of high impedance surface absorber with trapezoid-coupling pattern. J. Appl. Phys., 2012, 112:014106
[8] P. H. Zhou*, L. R. Huang, J. L. Xie, D. F. Liang, H. P. Lu, and L. J. Deng, A study on the effective permittivity of carbon/PI honeycomb composites for radar absorbing design, IEEE Trans. Antenna Propag., Vol. 60, No. 6, pp. 3679-3683, 2012
[9] P. H. Zhou, T. Liu, J. L. Xie and L. J. Deng. Damping effect on resonance bounds of nanostructure ferromagnets and composites. J. Appl. Phys., 2012, 111:113912
[10] T. Liu, P. H. Zhou, D. F. Liang, J. L. Xie, L. J. Deng. Multi-resonances behavior of Ni nanobelt/paraffin composites at microwave frequencies. Journal of Alloys and Compounds. 2012, 524:25
[11] T. Liu, P. H. Zhou, D. F. Liang and L. J. Deng. Electromagnetic absorption properties of flowerlike cobalt composites at microwave frequencies. Chinese Physics B, 2012, 21(5): 50302-050302
[12] Y. Q. Xu*, P. H. Zhou, H. B. Zhang, L. Chen, and L. J. Deng, A wide-angle planar metamaterial absorber based on split ring resonator coupling, J. Appl. Phys., Vol. 110, pp. 044102, 2011
[13] H. Y. Chen*, L. J. Deng, P. H. Zhou, and J. L. Xie, Tapered impedance loading for suppression of edge scattering, IET Microwave Antenna & Propag., Vol. 5, No. 14, pp. 1744-1749, 2011
[14] H. Y. Chen*, L. J. Deng, and P. H. Zhou, Suppression of surface wave from finite conducting surfaces with impedance loading at margins, J. Electromag. Waves Appl., Vol. 24, No. 14/15, pp. 1977-1989, 2010
[15] P. H. Zhou*, L. Zhang, and L. J. Deng, Spin wave mode transition induced by surface anisotropy and characteristic length in magnetic nanoparticles, Appl. Phys. Lett., Vol. 96, pp. 112510, 2010
[16] P. H. Zhou, J. L. Xie, D. F. Liang, L. J. Deng. The co-effect of induced and structural anisotropies on nanocrystalline alloys. J. Magn. Magn. Mater., 2010, 322:3290-3292
[17] P. H. Zhou, Y. Q. Liu, L. J. Xie. Effect of 3d transition metal substitution on microstructure and microwave absorption properties of FeSiB nanocrystalline flakes. J. Magn. Magn. Mater., 2010, 322:794-798
[18] P. H. Zhou, L. J. Deng. Bounds on the dynamic magnetic properties of multiresonant nanostructure composites in exchange resonance model. J. Appl. Phys., 2009, 105:07A509
[19] P. H. Zhou, L. J. Deng. Multi-resonance mechanism study for nanocrystalline iron/paraffin composites based on exchange energy and bounds in gigahertz. IEEE Trans. Magn., 2009, 45:663-669
[20] P. H. Zhou, L. J. Deng, B.-I. Wu, J. A. Kong. Influence of scatterer’s geometry on power-law formula in random mixing composites. PIER, 2008, 85:69-82
[21] P. H. Zhou, L. J. Deng, J. L. Xie, D. F. Liang. Effects of particle morphology and crystal structure on the microwave properties of flake-like nanocrystalline Fe3Co2 particles. J. Alloys Compd., 2008, 448:303-307
[22] P. H. Zhou, J. L. Xie, Y. Q. Liu, L. J. Deng. Composition dependence of microstructure, magnetic and microwave properties in ball-milled FeSiB nanocrystalline flakes. J. Magn. Magn. Mater., 2008, 320:3390-3393

相關詞條

熱門詞條

聯絡我們