Title of article :
Radiation model for nanoparticle: extension of classical Brownian motion concepts
Author/Authors :
Sharma، Niti Nipun نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
Emissive power per unit area of a blackbody
has been modeled as a function of frequency
using quantum electrodynamics, semi-classical and
classical approaches in the available literature. Present
work extends the classical lumped-parameter
systems model of Brownian motion of nanoparticle to
abstract an emissive power per unit area model for
nanoparticle radiating at temperature greater than
absolute zero. The analytical model developed in
present work has been based on synergism of local
deformation leading to local motion of nanoparticle
due to photon impacts. The work suggests the
hypothesis of a free parameter f 0 characterizing the
damping coefficient of resistive forces to local
motion of nanoparticle and the manipulation of
which is possible to realize desired emissivity from
nanoparticles. The model is validated with the well
established Planck’s radiation law.
Keywords :
Blackbody radiation , Planck’s law , Nanoparticle , Systems modeling , Numerical simulation , Brownian motion
Journal title :
Journal of Nanoparticle Research
Journal title :
Journal of Nanoparticle Research