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Study of thermal conductivity and thermal rectification in exponential mass graded lattices
Authors:Tejal N. ShahP.N. Gajjar
Affiliation:a Bhavan?s Sheth R.A. College of Science, Khanpur, Ahmedabad 380 001, Gujarat, India
b Department of Physics, University School of Sciences, Gujarat University, Ahmedabad 380 009, Gujarat, India
Abstract:Concept of exponential mass variation of oscillators along the chain length of N oscillators is proposed in the present Letter. The temperature profile and thermal conductivity of one-dimensional (1D) exponential mass graded harmonic and anharmonic lattices are studied on the basis of Fermi-Pasta-Ulam (FPU) β model. Present findings conclude that the exponential mass graded chain provide higher conductivity than that of linear mass graded chain. The exponential mass graded anharmonic chain generates the thermal rectification of 70-75% which is better than linear mass graded materials, so far. Thus instead of using linear mass graded material, the use of exponential mass graded material will be a better and genuine choice for controlling the heat flow at nano-scale.
Keywords:Heat conduction   Thermal conductivity   Anharmonic oscillator   Exponential mass graded material
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