Table 3 The optical parameters employed in the Spitzer-Fan and Drud Lorentz equations are used to analyze Polar PVA and PVA/NiMC films.

From: Fully environmental approach to design advanced optical polymer composites with high optoelectronic performance using green synthesized nickel metal complexes

Samples

\(\:\:\:\frac{{\varvec{N}}_{\varvec{c}}}{{\varvec{m}}^{\varvec{*}}}\:\times\:{10}^{55}\)

\(\:\left(\frac{1}{{\varvec{m}}^{3}.\varvec{k}\varvec{g}}\right)\)

\(\:{\:\:\:\:\:\:\:\varvec{\epsilon\:}}_{\varvec{\infty\:}}\)

\(\:\:\:\varvec{\tau\:}\:\times\:{10}^{-12}\:\:\left(\varvec{s}\right)\)

\(\:{\:\varvec{\mu\:}}_{\varvec{o}\varvec{p}\varvec{t}}\:\:\left(\frac{\varvec{C}.\varvec{s}}{\varvec{k}\varvec{g}}\right)\)

\(\:{\varvec{\rho\:}}_{\varvec{o}\varvec{p}\varvec{t}}\:\times\:{10}^{-8}\)

\(\:(\varvec{\Omega\:}.\mathbf{m})\)

\(\:{\varvec{\omega\:}}_{\varvec{p}\:\:}\times\:{10}^{29}\left(\frac{1}{\varvec{s}}\right)\)

PVNiMC0

4.9756

1.3516

2.60

0.394

0.317

1.44

PVNiMC1

20.9075

1.8513

31.40

4.76

0.449

8.43

PVNiMC2

60.7761

2.5523

16.10

2.45

0.375

19.60

PVNiMC3

103.528

3.2413

13.60

2.06

0.291

30.0