Y. J. Zhou and B. J. Yang, “Planar spoof plasmonic ultra-wideband filter based on low-loss and compact terahertz waveguide corrugated with dumbbell grooves,” Appl. Opt. 54(14), 4529–4533 (2015).
[Crossref]
[PubMed]
Y. Liang, H. Yu, H. C. Zhang, C. Yang, and T. J. Cui, “On-chip sub-terahertz surface plasmon polariton transmission lines in CMOS,” Sci. Rep. 5, 14853 (2015).
[Crossref]
[PubMed]
J. J. Wu, C.-J. Wu, J. Q. Shen, J. Hou, and W. C. Lo, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength metallic hollow blocks,” Sci. Rep. 5, 14461 (2015).
[Crossref]
[PubMed]
I. H. Chung, J. J. Wu, J. Q. Shen, and P. J. Huang, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength corrugated metallic wire with open hollow rings in THz regime,” Appl. Opt. 54(31), 9120–9126 (2015).
[Crossref]
[PubMed]
J. J. Xu, H. C. Zhang, Q. Zhang, and T. J. Cui, “Efficient conversion of surface-plasmon-like modes to spatial radiated modes,” Appl. Phys. Lett. 106(2), 021102 (2015).
[Crossref]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
X. Shen, T. J. Cui, D. Martin-Cano, and F. J. Garcia-Vidal, “Conformal surface plasmons propagating on ultrathin and flexible films,” Proc. Natl. Acad. Sci. U.S.A. 110(1), 40–45 (2013).
[Crossref]
[PubMed]
X. Liu, Y. Feng, B. Zhu, J. Zhao, and T. Jiang, “High-order modes of spoof surface plasmonic wave transmission on thin metal film structure,” Opt. Express 21(25), 31155–31165 (2013).
[Crossref]
[PubMed]
O. Q. Teruel, “Controlled radiation from dielectric slabs over spoof surface plasmon waveguides,” Prog. Electromagnetics Res. 140, 169–179 (2013).
[Crossref]
T. Jiang, L. Shen, J. J. Wu, T.-J. Yang, Z. Ruan, and L. Ran, “Realization of tightly confined channel plasmon polaritons at low frequencies,” Appl. Phys. Lett. 99(26), 261103 (2011).
[Crossref]
J. J. Wu, H. E. Lin, T. J. Yang, H. J. Chang, and I. J. Hsieh, “Low-frequency surface plasmon polaritons guided on a corrugated metal striplines with subwavelength periodical inward slits,” Plasmonics 6(1), 59–65 (2011).
[Crossref]
S. K. Koo, H. S. Lee, and Y. B. Park, “Crosstalk reduction effect of asymmetry stub loaded lines,” J. Electromagn. Waves Appl. 25(8-9), 1156–1167 (2011).
[Crossref]
J. J. Wu, “Subwavelength microwave guiding by periodically corrugated strip line,” Prog. Electromagnetics Res. 104, 113–123 (2010).
[Crossref]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
A. R. Mallahzadeh, A. H. Ghasemi, S. Akhlaghi, B. Rahmati, and R. Bayderkhani, “Crosstalk reduction using step shaped transmission line,” Prog. Electromagn. Res. 12, 139–148 (2010).
[Crossref]
W. T. Huang, C. H. Lu, and D. B. Lin, “Suppression of crosstalk using serpentine guard trace vias,” Prog. Electromagnetics Res. 109, 37–61 (2010).
[Crossref]
L. F. Shen, X. D. Chen, Y. Zhong, and K. Agarwal, “Effect of absorption on terahertz surface plasmon polaritons propagating along periodically corrugated metal wires,” Phys. Rev. B 77(7), 075408 (2008).
[Crossref]
S. A. Maier, S. R. Andrews, L. Martín-Moreno, and F. J. García-Vidal, “Terahertz surface plasmon-polariton propagation and focusing on periodically corrugated metal wires,” Phys. Rev. Lett. 97(17), 176805 (2006).
[Crossref]
[PubMed]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
F. J. García de Abajo and J. J. Sáenz, “Electromagnetic surface modes in structured perfect-conductor surfaces,” Phys. Rev. Lett. 95(23), 233901 (2005).
[Crossref]
[PubMed]
J. B. Pendry, L. Martín-Moreno, and F. J. Garcia-Vidal, “Mimicking surface plasmons with structured surfaces,” Science 305(5685), 847–848 (2004).
[Crossref]
[PubMed]
F. Xiao, W. Liu, and Y. Kami, “Analysis of crosstalk between finite-length microstrip lines FDTD approach and circuit-concept modeling,” IEEE Trans. Electromagn. Compat. 43(4), 573–578 (2001).
[Crossref]
S. Dai, A. Z. Elsherbeni, and C. E. Smith, “Nonuniform FDTD formulation for the analysis and reduction of crosstalk on coupled microstrip lines,” J. Electromagn. Waves Appl. 10(12), 1663–1682 (1996).
[Crossref]
D. N. Ladd and G. I. Costache, “Spice simulation used to characterize the cross-talk reduction effect of additional tracks grounded with vias on printed circuit boards,” IEEE Trans. Circ. Syst.: Analog Digital Sig. Process. 39(6), 342–347 (1992).
[Crossref]
S. Seki and H. Hasegawa, “Analysis of crosstalk in very high-speed LSI/VLSI’s using a coupled multiconductor MIS microstrip line model,” IEEE Trans. Microw. Theory Tech. 32(12), 1715–1720 (1984).
[Crossref]
F. K. Schwering and S. T. Peng, “Design of dielectric grating antennas for millimeter-wave applications,” IEEE Trans. Microw. Theory Tech. 31(2), 199–209 (1983).
[Crossref]
L. F. Shen, X. D. Chen, Y. Zhong, and K. Agarwal, “Effect of absorption on terahertz surface plasmon polaritons propagating along periodically corrugated metal wires,” Phys. Rev. B 77(7), 075408 (2008).
[Crossref]
A. R. Mallahzadeh, A. H. Ghasemi, S. Akhlaghi, B. Rahmati, and R. Bayderkhani, “Crosstalk reduction using step shaped transmission line,” Prog. Electromagn. Res. 12, 139–148 (2010).
[Crossref]
S. A. Maier, S. R. Andrews, L. Martín-Moreno, and F. J. García-Vidal, “Terahertz surface plasmon-polariton propagation and focusing on periodically corrugated metal wires,” Phys. Rev. Lett. 97(17), 176805 (2006).
[Crossref]
[PubMed]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
A. R. Mallahzadeh, A. H. Ghasemi, S. Akhlaghi, B. Rahmati, and R. Bayderkhani, “Crosstalk reduction using step shaped transmission line,” Prog. Electromagn. Res. 12, 139–148 (2010).
[Crossref]
J. J. Wu, H. E. Lin, T. J. Yang, H. J. Chang, and I. J. Hsieh, “Low-frequency surface plasmon polaritons guided on a corrugated metal striplines with subwavelength periodical inward slits,” Plasmonics 6(1), 59–65 (2011).
[Crossref]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
L. F. Shen, X. D. Chen, Y. Zhong, and K. Agarwal, “Effect of absorption on terahertz surface plasmon polaritons propagating along periodically corrugated metal wires,” Phys. Rev. B 77(7), 075408 (2008).
[Crossref]
D. N. Ladd and G. I. Costache, “Spice simulation used to characterize the cross-talk reduction effect of additional tracks grounded with vias on printed circuit boards,” IEEE Trans. Circ. Syst.: Analog Digital Sig. Process. 39(6), 342–347 (1992).
[Crossref]
J. J. Xu, H. C. Zhang, Q. Zhang, and T. J. Cui, “Efficient conversion of surface-plasmon-like modes to spatial radiated modes,” Appl. Phys. Lett. 106(2), 021102 (2015).
[Crossref]
Y. Liang, H. Yu, H. C. Zhang, C. Yang, and T. J. Cui, “On-chip sub-terahertz surface plasmon polariton transmission lines in CMOS,” Sci. Rep. 5, 14853 (2015).
[Crossref]
[PubMed]
X. Shen, T. J. Cui, D. Martin-Cano, and F. J. Garcia-Vidal, “Conformal surface plasmons propagating on ultrathin and flexible films,” Proc. Natl. Acad. Sci. U.S.A. 110(1), 40–45 (2013).
[Crossref]
[PubMed]
S. Dai, A. Z. Elsherbeni, and C. E. Smith, “Nonuniform FDTD formulation for the analysis and reduction of crosstalk on coupled microstrip lines,” J. Electromagn. Waves Appl. 10(12), 1663–1682 (1996).
[Crossref]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
S. Dai, A. Z. Elsherbeni, and C. E. Smith, “Nonuniform FDTD formulation for the analysis and reduction of crosstalk on coupled microstrip lines,” J. Electromagn. Waves Appl. 10(12), 1663–1682 (1996).
[Crossref]
F. J. García de Abajo and J. J. Sáenz, “Electromagnetic surface modes in structured perfect-conductor surfaces,” Phys. Rev. Lett. 95(23), 233901 (2005).
[Crossref]
[PubMed]
X. Shen, T. J. Cui, D. Martin-Cano, and F. J. Garcia-Vidal, “Conformal surface plasmons propagating on ultrathin and flexible films,” Proc. Natl. Acad. Sci. U.S.A. 110(1), 40–45 (2013).
[Crossref]
[PubMed]
J. B. Pendry, L. Martín-Moreno, and F. J. Garcia-Vidal, “Mimicking surface plasmons with structured surfaces,” Science 305(5685), 847–848 (2004).
[Crossref]
[PubMed]
S. A. Maier, S. R. Andrews, L. Martín-Moreno, and F. J. García-Vidal, “Terahertz surface plasmon-polariton propagation and focusing on periodically corrugated metal wires,” Phys. Rev. Lett. 97(17), 176805 (2006).
[Crossref]
[PubMed]
A. R. Mallahzadeh, A. H. Ghasemi, S. Akhlaghi, B. Rahmati, and R. Bayderkhani, “Crosstalk reduction using step shaped transmission line,” Prog. Electromagn. Res. 12, 139–148 (2010).
[Crossref]
S. Seki and H. Hasegawa, “Analysis of crosstalk in very high-speed LSI/VLSI’s using a coupled multiconductor MIS microstrip line model,” IEEE Trans. Microw. Theory Tech. 32(12), 1715–1720 (1984).
[Crossref]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
J. J. Wu, C.-J. Wu, J. Q. Shen, J. Hou, and W. C. Lo, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength metallic hollow blocks,” Sci. Rep. 5, 14461 (2015).
[Crossref]
[PubMed]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
J. J. Wu, H. E. Lin, T. J. Yang, H. J. Chang, and I. J. Hsieh, “Low-frequency surface plasmon polaritons guided on a corrugated metal striplines with subwavelength periodical inward slits,” Plasmonics 6(1), 59–65 (2011).
[Crossref]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
W. T. Huang, C. H. Lu, and D. B. Lin, “Suppression of crosstalk using serpentine guard trace vias,” Prog. Electromagnetics Res. 109, 37–61 (2010).
[Crossref]
X. Liu, Y. Feng, B. Zhu, J. Zhao, and T. Jiang, “High-order modes of spoof surface plasmonic wave transmission on thin metal film structure,” Opt. Express 21(25), 31155–31165 (2013).
[Crossref]
[PubMed]
T. Jiang, L. Shen, J. J. Wu, T.-J. Yang, Z. Ruan, and L. Ran, “Realization of tightly confined channel plasmon polaritons at low frequencies,” Appl. Phys. Lett. 99(26), 261103 (2011).
[Crossref]
F. Xiao, W. Liu, and Y. Kami, “Analysis of crosstalk between finite-length microstrip lines FDTD approach and circuit-concept modeling,” IEEE Trans. Electromagn. Compat. 43(4), 573–578 (2001).
[Crossref]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
S. K. Koo, H. S. Lee, and Y. B. Park, “Crosstalk reduction effect of asymmetry stub loaded lines,” J. Electromagn. Waves Appl. 25(8-9), 1156–1167 (2011).
[Crossref]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
D. N. Ladd and G. I. Costache, “Spice simulation used to characterize the cross-talk reduction effect of additional tracks grounded with vias on printed circuit boards,” IEEE Trans. Circ. Syst.: Analog Digital Sig. Process. 39(6), 342–347 (1992).
[Crossref]
S. K. Koo, H. S. Lee, and Y. B. Park, “Crosstalk reduction effect of asymmetry stub loaded lines,” J. Electromagn. Waves Appl. 25(8-9), 1156–1167 (2011).
[Crossref]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
Y. Liang, H. Yu, H. C. Zhang, C. Yang, and T. J. Cui, “On-chip sub-terahertz surface plasmon polariton transmission lines in CMOS,” Sci. Rep. 5, 14853 (2015).
[Crossref]
[PubMed]
W. T. Huang, C. H. Lu, and D. B. Lin, “Suppression of crosstalk using serpentine guard trace vias,” Prog. Electromagnetics Res. 109, 37–61 (2010).
[Crossref]
J. J. Wu, H. E. Lin, T. J. Yang, H. J. Chang, and I. J. Hsieh, “Low-frequency surface plasmon polaritons guided on a corrugated metal striplines with subwavelength periodical inward slits,” Plasmonics 6(1), 59–65 (2011).
[Crossref]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
F. Xiao, W. Liu, and Y. Kami, “Analysis of crosstalk between finite-length microstrip lines FDTD approach and circuit-concept modeling,” IEEE Trans. Electromagn. Compat. 43(4), 573–578 (2001).
[Crossref]
J. J. Wu, C.-J. Wu, J. Q. Shen, J. Hou, and W. C. Lo, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength metallic hollow blocks,” Sci. Rep. 5, 14461 (2015).
[Crossref]
[PubMed]
W. T. Huang, C. H. Lu, and D. B. Lin, “Suppression of crosstalk using serpentine guard trace vias,” Prog. Electromagnetics Res. 109, 37–61 (2010).
[Crossref]
S. A. Maier, S. R. Andrews, L. Martín-Moreno, and F. J. García-Vidal, “Terahertz surface plasmon-polariton propagation and focusing on periodically corrugated metal wires,” Phys. Rev. Lett. 97(17), 176805 (2006).
[Crossref]
[PubMed]
A. R. Mallahzadeh, A. H. Ghasemi, S. Akhlaghi, B. Rahmati, and R. Bayderkhani, “Crosstalk reduction using step shaped transmission line,” Prog. Electromagn. Res. 12, 139–148 (2010).
[Crossref]
X. Shen, T. J. Cui, D. Martin-Cano, and F. J. Garcia-Vidal, “Conformal surface plasmons propagating on ultrathin and flexible films,” Proc. Natl. Acad. Sci. U.S.A. 110(1), 40–45 (2013).
[Crossref]
[PubMed]
S. A. Maier, S. R. Andrews, L. Martín-Moreno, and F. J. García-Vidal, “Terahertz surface plasmon-polariton propagation and focusing on periodically corrugated metal wires,” Phys. Rev. Lett. 97(17), 176805 (2006).
[Crossref]
[PubMed]
J. B. Pendry, L. Martín-Moreno, and F. J. Garcia-Vidal, “Mimicking surface plasmons with structured surfaces,” Science 305(5685), 847–848 (2004).
[Crossref]
[PubMed]
S. K. Koo, H. S. Lee, and Y. B. Park, “Crosstalk reduction effect of asymmetry stub loaded lines,” J. Electromagn. Waves Appl. 25(8-9), 1156–1167 (2011).
[Crossref]
J. B. Pendry, L. Martín-Moreno, and F. J. Garcia-Vidal, “Mimicking surface plasmons with structured surfaces,” Science 305(5685), 847–848 (2004).
[Crossref]
[PubMed]
F. K. Schwering and S. T. Peng, “Design of dielectric grating antennas for millimeter-wave applications,” IEEE Trans. Microw. Theory Tech. 31(2), 199–209 (1983).
[Crossref]
A. R. Mallahzadeh, A. H. Ghasemi, S. Akhlaghi, B. Rahmati, and R. Bayderkhani, “Crosstalk reduction using step shaped transmission line,” Prog. Electromagn. Res. 12, 139–148 (2010).
[Crossref]
T. Jiang, L. Shen, J. J. Wu, T.-J. Yang, Z. Ruan, and L. Ran, “Realization of tightly confined channel plasmon polaritons at low frequencies,” Appl. Phys. Lett. 99(26), 261103 (2011).
[Crossref]
T. Jiang, L. Shen, J. J. Wu, T.-J. Yang, Z. Ruan, and L. Ran, “Realization of tightly confined channel plasmon polaritons at low frequencies,” Appl. Phys. Lett. 99(26), 261103 (2011).
[Crossref]
F. J. García de Abajo and J. J. Sáenz, “Electromagnetic surface modes in structured perfect-conductor surfaces,” Phys. Rev. Lett. 95(23), 233901 (2005).
[Crossref]
[PubMed]
F. K. Schwering and S. T. Peng, “Design of dielectric grating antennas for millimeter-wave applications,” IEEE Trans. Microw. Theory Tech. 31(2), 199–209 (1983).
[Crossref]
S. Seki and H. Hasegawa, “Analysis of crosstalk in very high-speed LSI/VLSI’s using a coupled multiconductor MIS microstrip line model,” IEEE Trans. Microw. Theory Tech. 32(12), 1715–1720 (1984).
[Crossref]
J. J. Wu, C.-J. Wu, J. Q. Shen, J. Hou, and W. C. Lo, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength metallic hollow blocks,” Sci. Rep. 5, 14461 (2015).
[Crossref]
[PubMed]
I. H. Chung, J. J. Wu, J. Q. Shen, and P. J. Huang, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength corrugated metallic wire with open hollow rings in THz regime,” Appl. Opt. 54(31), 9120–9126 (2015).
[Crossref]
[PubMed]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
T. Jiang, L. Shen, J. J. Wu, T.-J. Yang, Z. Ruan, and L. Ran, “Realization of tightly confined channel plasmon polaritons at low frequencies,” Appl. Phys. Lett. 99(26), 261103 (2011).
[Crossref]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
L. F. Shen, X. D. Chen, Y. Zhong, and K. Agarwal, “Effect of absorption on terahertz surface plasmon polaritons propagating along periodically corrugated metal wires,” Phys. Rev. B 77(7), 075408 (2008).
[Crossref]
X. Shen, T. J. Cui, D. Martin-Cano, and F. J. Garcia-Vidal, “Conformal surface plasmons propagating on ultrathin and flexible films,” Proc. Natl. Acad. Sci. U.S.A. 110(1), 40–45 (2013).
[Crossref]
[PubMed]
S. Dai, A. Z. Elsherbeni, and C. E. Smith, “Nonuniform FDTD formulation for the analysis and reduction of crosstalk on coupled microstrip lines,” J. Electromagn. Waves Appl. 10(12), 1663–1682 (1996).
[Crossref]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
A. L. Stepanov, J. R. Krenn, H. Ditlbacher, A. Hohenau, A. Drezet, B. Steinberger, A. Leitner, and F. R. Aussenegg, “Quantitative analysis of surface plasmon interaction with silver nanoparticles,” Opt. Lett. 30(12), 1524–1526 (2005).
[Crossref]
[PubMed]
O. Q. Teruel, “Controlled radiation from dielectric slabs over spoof surface plasmon waveguides,” Prog. Electromagnetics Res. 140, 169–179 (2013).
[Crossref]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
J. J. Wu, Y. H. Kao, H. E. Lin, T. J. Yang, D. C. Tsai, H. J. Chang, C. C. Li, I. J. Hsieh, L. F. Shen, and X. F. Zhang, “Crosstalk reduction between metal-strips with subwavelength,” Electron. Lett. 46(18), 1273–1274 (2010).
[Crossref]
J. J. Wu, C.-J. Wu, J. Q. Shen, J. Hou, and W. C. Lo, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength metallic hollow blocks,” Sci. Rep. 5, 14461 (2015).
[Crossref]
[PubMed]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
I. H. Chung, J. J. Wu, J. Q. Shen, and P. J. Huang, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength corrugated metallic wire with open hollow rings in THz regime,” Appl. Opt. 54(31), 9120–9126 (2015).
[Crossref]
[PubMed]
J. J. Wu, C.-J. Wu, J. Q. Shen, J. Hou, and W. C. Lo, “Properties of transmission and leaky modes in a plasmonic waveguide constructed by periodic subwavelength metallic hollow blocks,” Sci. Rep. 5, 14461 (2015).
[Crossref]
[PubMed]
J. J. Wu, J. Hou, K. Liu, L. Shen, C. A. Tsai, C.-J. Wu, D. Tsai, and T.-J. Yang, “Differential microstrip lines with reduced crosstalk and common mode effect based on spoof surface plasmon polaritons,” Opt. Express 22(22), 26777–26787 (2014).
[Crossref]
[PubMed]
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