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Volume 35 Issue 4
May  2013
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Study on property of prohibited band gaps in 1-D ternary unmagnetized plasma photonic crystals

  • Corresponding author: ZHANG Hai-feng, hanlor@163.com
  • Received Date: 2010-07-24
    Accepted Date: 2010-08-20
  • In order to study property of prohibit band gaps in 1-D ternary unmagnetized plasma photonic crystals,the transfer matrix method was applied to simulate the electromagnetic wave propagation through 1-D ternary unmagnetized plasma photonic crystals.Based on the calculated transmission coefficients,effect of periodic constant,dielectric constant,thickness of dielectric layer and parameter of plasma on the property of prohibited band gaps was analyzed.The results illustrate that the band gaps can be tuned by changing dielectric constant,thickness of dielectric layer and plasma frequency,the bandwidth of prohibited band gaps can not be broadened by increasing periodic and plasma collision frequency.The results are good theoretical references to design 1-D ternary unmagnetized plasma photonic crystal devices.
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Study on property of prohibited band gaps in 1-D ternary unmagnetized plasma photonic crystals

    Corresponding author: ZHANG Hai-feng, hanlor@163.com
  • 1. Nanjing Branch, Artillery Academy of the Chinese People's Liberation Army, Nanjing 211132, China

Abstract: In order to study property of prohibit band gaps in 1-D ternary unmagnetized plasma photonic crystals,the transfer matrix method was applied to simulate the electromagnetic wave propagation through 1-D ternary unmagnetized plasma photonic crystals.Based on the calculated transmission coefficients,effect of periodic constant,dielectric constant,thickness of dielectric layer and parameter of plasma on the property of prohibited band gaps was analyzed.The results illustrate that the band gaps can be tuned by changing dielectric constant,thickness of dielectric layer and plasma frequency,the bandwidth of prohibited band gaps can not be broadened by increasing periodic and plasma collision frequency.The results are good theoretical references to design 1-D ternary unmagnetized plasma photonic crystal devices.

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