Wave Propagation Part 14 pot

Wave Propagation Part 14 pot

Wave Propagation Part 14 pot

... metal nanoparticle plasmon waveguides. Nature Mater., Vol. 2, No.4, 229-232 McGurn, A. R. & Maradudin, A. A. (1993). Photonic band strucutures of two and three 458 Wave Propagation 14 Electromagnetic ... coupled plasmon-polariton modes in Au nanoparticle chain waveguides of different lengths: Estimation of waveguide loss. Appl. Phys. Lett., Vol. 81, No. 9, 1 714- 1716 Maier, S. A.;...

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Wave Propagation Part 2 potx

Wave Propagation Part 2 potx

... optics. Microwave sensors based on the waveguide filled with metamaterial particles are simulated, and their sensitivity is much higher than traditional microwave sensor. The open microwave resonator ... structural symmetry. Phys. Rev. Lett., Vol. 99, No. 14, 147 401, ISSN: 1079-7 114 Guru, B. S. & Hiziroglu, H. R. (1998). Plane wave propagation, In: Electromagnetic Field Th...

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Wave Propagation Part 3 potx

Wave Propagation Part 3 potx

... maximum intensity (143 ), (144 ) of the bulk wave attained for Δ e α = 0 is again accompanied by zero integral energy in this wave, because the main part of the incident extraordinary wave (except ... the dissipation of the incident electromagnetic wave due to the imaginary part of the dielectric function 88 Wave Propagation Electromagnetic Wave Propagation in Two-Dimens...

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Wave Propagation Part 4 potx

Wave Propagation Part 4 potx

... relation of trade-off. In order to obtain intense terahertz wave emission, earlier works focused on Wave Propagation 114 Fig. 7. Potential energy of the i-GaAs(d nm)/n-GaAs structure as ... graphene conductivity. 102 Wave Propagation Wave Propagation 108 THz () ()Et jt t ∂ ∝ ∂ . (1) Equation (1) is a basic relation between the surge current and terahertz wave...

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Wave Propagation Part 5 pot

Wave Propagation Part 5 pot

... unperturbed part n o 2 and a perturbed part Δn 2 ; this expression is given as n 2 z(=) n o 2 + n 2 (z) (26b) Thus  2 ψ + k 2 n o 2 (z) =ρ(z) (27) x x x x x x x x Mesh ψ (z) k 1 Wave Propagation ... H 0 + V is the solution of ε ref Wave Propagation 142 8. Result/discussion 0 0.2 0.4 0.6 0.8 1 1.2 1.4 0.00 1.00 2.00 3.00 4.00 5.00 6.00 Propagation Dis...

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Wave Propagation Part 6 potx

Wave Propagation Part 6 potx

... b). Electromagnetic wave propagation in multilayered structures with negative index material, In: Wave propagation in materials for modern applications, Petrin, A. (Ed.), pp. 149 -162, Intech, ... polaritons (SPPs) as quasi-particles associated with the wave. The dispersion of the surface wave has the following important feature [Economou (1969), Barnes (2006)]: the wavelength...

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Wave Propagation Part 7 potx

Wave Propagation Part 7 potx

... indicate whether the waves are up-going or down-going. In the exponents, a, b = 1ifthewavesare up-going. We let a,b = −1 if the waves are down-going. The z-component of the mean propagation constant ... second moment of the wave function E, which can be decomposed into a coherent part ¯ E and a diffuse part ˜ E. Therefore, E ⊗ E ∗  = E⊗E ∗ +  ˜ E ⊗ ˜ E ∗ . (74) The coherent p...

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Wave Propagation Part 10 potx

Wave Propagation Part 10 potx

... f 0 ∂v ⊥ . 316 Wave Propagation Electromagnetic Waves in Plasma 13 (a) Linear scale. (b) Logarithmic scale. Fig. 1. Linear dispersion relation (frequency ω versus wavenumber k) for electromagnetic waves ... plasma particles. When plasma has the Maxwellian velocity distribution (23), we can explicitly perform the velocity-space integral by using the following properties, 318 Wave Propag...

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Wave Propagation Part 11 potx

Wave Propagation Part 11 potx

... constant of hard-magnetic Nd 2 Fe 14 B phases respectively. Therefore microwave Part 5 Electromagnetic Waves Absorption and No Reflection Phenomena Wave Propagation 364 Eq. (5). On the ... expect a very wide range waveguide composed of plasma chains; an example was demonstrated in Fig. 4. Wave Propagation 362 Fig. 7. Magnetic hysteresis loops for Nd 2 Fe 14 B/-...

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Wave Propagation Part 13 potx

Wave Propagation Part 13 potx

... the electromagnetic waves. One sees that LCP waves propagate with no scattering, and RCP waves are largely scattered. Next, we analyze the propagation of electromagnetic waves when they are incident ... a particular incident angle. When the wave impedance and the abs olute value of the wavenumber in the chiral medium equal t hose in the vacuum for one of the CP waves, t he corresponding C...

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