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Modified Ballistic-Diffusive Equations for Obtaining Phonon Mean Free Path Spectrum from Ballistic Thermal Resistance: II. Derivation of Integral Equation Based on Ballistic Thermal Resistance

机译:改进的弹道 - 扩散方程,用于获得来自弹性耐热性的错位意味着自由路径光谱:II。 基于弹道热阻的整体方程推导

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摘要

Rebuilding phonon mean free path (MFP) spectra from experimental data is integral to phonon MFP spectroscopy. However, being based on effective thermal conductivity, the current integral equation for this precludes the use of certain heat sources of convenient shapes, such as a cylindrical nanoline. Herein, to enable using diverse specimens exhibiting a ballistic effect, we develop a ballistic thermal resistance-based integral equation, utilizing the ease and accuracy of the modified ballistic-diffusive equations demonstrated in the companion paper. The availability of more diverse shapes of specimens will enhance further development and widen use of phonon MFP spectroscopy.
机译:从实验数据重建声子意义自由路径(MFP)光谱是对声子MFP光谱的一体的。 然而,基于有效的导热率,电流整体方程可以排除使用方便的某些热源,例如圆柱形纳米。 在此,为了使得使用具有迹体效应的不同标本,我们开发了基于弹道的热阻的整体方程,利用了伴随纸张中所示的修改的弹道扩散方程的易于和准确性。 更多样化的标本的可用性将增强进一步的开发和扩大使用子MFP光谱的使用。

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