|
[1]Xiao, F., Liu, W., and Kami, Y.: ‘Analysis of crosstalk between finite-length microstrip lines: FDTD approach and circuit-concept modeling’, IEEE Trans. Electromagnetic Compatibility, vol.43,(4), pp.573-578, 2001. [2]S. SEKI AND H. HASEGAWA, MEMBER, “Analysis of crosstalk in very high-speed LSI/VLSI’s using a coupled multiconductor MIS microstrip line model”, IEEE Transactions on microwave theory and technique, vol. 32, no. 12, pp.1715-1720, 1984. [3]Ladd, D. N., and Costache, G. I.: ‘SPICE simulation used to characterize the cross-talk reduction effect of additional tracks grounded with vias on printed circuit boards’, IEEE Trans. Circuits and Systems II: Analog and Digital Signal, 1992, 39,(6), pp. 342-347. [4]Mallahzadeh, A. R., Ghasemi, A. H., Akhlagh,i S., Rahmati, B., and Bayderkhani, R.: ‘Crosstalk reduction using step shaped transmission line’, Progress In Electromagnetics Research C, 2010, 12, pp.139-148. [5]Dai, S., Elsherbeni, A. Z., and Smith, C. E.: ‘Nonuniform FDTD formulation for the analysis and reduction of crosstalk on coupled microstrip lines’ J. of Electromagn. Waves and appl., 1996, 10, pp.1663-1682. [6]Huang, W. T., Lu, C. H., and Lin D. B.:‘Suppression of crosstalk using serpentine guard trace vias’, Progress In Electromagnetics Research, 2010, 109 , pp.37-61. [7]Lee, K., H. B. Lee, H. K. Jung, J. Y. Sim, and H. J. Park, A serpentine guard trace to reduce the far-end crosstalk voltage and the crosstalk induced timing jitter of parallel microstrip lines," IEEE Transactions on Advanced Packaging, Vol. 31, No. 4, pp. 809-817, Nov. 2008. [8]Raether, H.: ‘Surface Plasmons’, (Springer-Verlag, Berlin, 1988). [9]Stepanov, A. L., Krenn, J. R., Ditlbacher, H., Hohenau, A., Drezet, A., Steinberger, B., Leitner, A., and Aussenegg, F. R.: ‘Quantitative analysis of surface plasmon interaction with silver nanoparticles’, Optics Lett., , 2005, 30, pp.1524-1526. [10]Liu L., Han Z., and He S., “Novel surface plasmon waveguide for high integration”, Opt. Express, Vol.13, 6645-6650, 2005. [11]Pendry, J. B., Martin-Moreno, L., and Garcia-Vidal, F. J.: ‘Mimicking surface plasmons with structured surfaces’, Science, 2004, 305, pp.847-848. [12]Garcia de Abajo, F.J., and Saenz, J.J.: ‘Electromagnetic surface modes in structured perfect-conductor surfaces’, Phys. Rev. Lett., 2005, 95, p. 233901. [13]García de Abajo F. J., “Light scattering by particle and hole arrays”, Rev. Modern Phys, Vol. 79, pp.1267-1290, 2007. [14]Maier, S. A., S. R. Andrews, L. Martin-Moreno, and F. J. Garcia-Vidal, “Terahertz surface plasmon-polariton propagation and focusing on periodically corrugated metal wires," Phys. Rev. Lett., Vol. 97, 176805-1-4, 2006. [15]Hibbins P., Evans B. R., and Sambles J. R., “Experimental verification of designer Surface plasmons”, Science, Vol. 308, 670-672, 2005. [16]Koo S.K., Lee H.S. and Park Y. B., “Crosstalk reduction effect of asymmetry stub loaded lines”, Journal of Electromagnetic Waves and Applications, Vol. 25, pp.1156-1167, 2011. [17]Wu J. J., Kao Y. H., Lin H. E., Yang T. J., Tsai D. C., Chang H. J., Li C. C., Hsieh I. J., Shen L. F. and Zhang X. F., “Crosstalk reduction between metal-strips with subwavelength”, Electronics Letters, Vol. 16, No.18, pp. 1273-1274, 2010. [18]Shen, L. F., Chen, X., Zhong, Y., and Agarwal, K.: ‘Effect of absorption on terahertz surface plasmon polaritons propagating along periodically corrugated metal wires’, Phys. Rev. B, 2008, 77, (7), 075408.
|