x(0) = Exercise 5 - Polarizability For dense media such as glass with refractive index ns, embedded in a medium with ref

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x(0) = Exercise 5 - Polarizability For dense media such as glass with refractive index ns, embedded in a medium with ref

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X 0 Exercise 5 Polarizability For Dense Media Such As Glass With Refractive Index Ns Embedded In A Medium With Ref 1
X 0 Exercise 5 Polarizability For Dense Media Such As Glass With Refractive Index Ns Embedded In A Medium With Ref 1 (48.58 KiB) Viewed 73 times
x(0) = Exercise 5 - Polarizability For dense media such as glass with refractive index ns, embedded in a medium with refractive index Nimed, the dispersion equation is modified through the Clausius-Mossotti formula such that the response function reads: 8+ n(@-n n (m) + 2 a) What must be the relation between both refractive indices to maximize xlo)? b) Compare (!) the moduli of the response functions of the following configurations: i) A gold particle in water at 7. = 0.5 um ii) Agold particle in water at 1. = 1.0 um iii) A silver particle in water at i = 0.5 um iv) A polystyrene particle (ns = 1.59) in water at i = 0.5 um v) A polystyrene particle (ns = 1.59) in air at 1.= 0.5 um Use the complex refractive indices ns(o) given in figure 10 of the lecture notes.
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