Absorption cross section of carbon soot clusters inside water microdroplets
is calculated. Fractal geometry of carbon inclusions is considered with th
e fractal dimension D in the interval 1 less than or equal to D less than o
r equal to 3, which includes the trivial geometry (D = 3) as a limiting cas
e. It is found that the absorption cross section of a soot cluster inside a
water droplet is increased, compared to that in vacuum, by the factor of a
pproximate to 16 for the practically important case of D = 1.8. This result
is obtained by averaging of the enhancement factor over the diffraction pa
rameter of the microdroplets x = ka (k = 2 pi/lambda), a is the radius of t
he microdroplet) with a fine resolution. It is shown that the narrow resona
nces in the enhancement factor as a function of x play important role and s
hould be taken into account for the purpose of averaging over x. The absorp
tion enhancement factor increases, on average, when D decreases, and reache
s the value of approximate to 22 for D = 1. (C) 1999 Elsevier Science Ltd.
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