Title of article :
Influence of interface thermal resistance on relaxation dynamics of metal-dielectric nanocomposite materials under ultrafast pulse laser excitation
Author/Authors :
Rashidi Huyeh، M نويسنده Department of Physics, University of Sistan and Baluchestan, Zahedan, Iran , , Moosavinejad، N نويسنده Department of Physics, University of Sistan and Baluchestan, Zahedan, Iran ,
Issue Information :
دوفصلنامه با شماره پیاپی 0 سال 2013
Abstract :
Nanocomposite materials, including noble metal nanoparticles embedded in a dielectric host medium, are
interesting because of their optical properties linked to surface plasmon resonance phenomena. For studding of
nonlinear optical properties and/or energy transfer process, these materials may be excited by ultrashort pulse
laser with a temporal width varying from some femtoseconds to some hundreds of picoseconds. Following of
absorption of light energy by metal-dielectric nanocomposite material, metal nanoparticles are heated. Then, the
thermal energy is transferred to the host medium through particle-dielectric interface. On the one hand,
nonlinear optical properties of such materials depend on their thermal responses to laser pulse, and on the other
hand different parameters, such as pulse laser and medium thermodynamic characterizes, govern on the thermal
responses of medium to laser pulse. Here, influence of thermal resistance at particle-surrounding medium
interface on thermal response of such material under ultrashort pulse laser excitation is investigated. For this,
we used three temperature model based on energy exchange between different bodies of medium. The results
show that the interface thermal resistance plays a crucial role on nanoparticle cooling dynamics, so that the
relaxation characterized time increases by increasing of interface thermal resistance
Journal title :
Transport Phenomena in Nano and Micro Scales
Journal title :
Transport Phenomena in Nano and Micro Scales