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Normalized electro-optic coefficients versus chromophore number density

FIGURE 7 Graphs of normalized electro-optic coefficient versus chromophore number density N. The symbols have the same meaning as in Fig. 6. [Pg.626]

FIGURE 8 Experimental (diamonds) and theoretical (solid line) values of normalized electro-optic coefficient versus chromophore number density for the DR chromophore of Table 2. The theoretical graph corresponds to D = 3.83 x 10 and the assumption of spherically symmetric symmetry. [Pg.627]

Debye. In Fig. 7, graphs of normalized electro-optic coefficients versus chromo-phore number density are shown for the electrostatic energies of Fig. 6. Clearly, maxima in the curves of the electro-optic coefficient versus chromophore loading are predicted by Eq. 21 and the maxima are predicted to shift to lower loading with increasing /x, o , and /. [Pg.626]




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Chromophore density

Chromophore number density

Density normalization

Density, optical

Electro-optic

Electro-optic coefficients

Electro-optical

Normalized electro-optic coefficients

Versus density

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