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Disorder limits the coherent phonon transport in two-dimensional phononic crystal structures

机译:障碍限制了相干声子传输二维声子晶体结构

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摘要

Recently, increasing efforts are being made to control thermal transport via coherent phonons in periodic phononic structures; however, the direct observation of coherent phonon transport is experimentally very difficult at ambient temperature, and the importance of coherent phonons to the total thermal conductivity has not been critically assessed to date. In this study, using the non-equilibrium molecular dynamics simulations, we studied coherent phonon transport in a C3N phononic crystal (CNPnC) structure at room temperature by changing the porosity. When the holes were randomly distributed to construct the disordered C3N (D-C3N) structure, the localization of the coherent phonons was revealed by the phonon transmission coefficient, phonon wave packet simulation, phonon participation ratio and spatial energy density, which led to a significant reduction in the thermal conductivity. Finally, the effects of the length, temperature and strain on the thermal conductivity of CNPnC and D-C3N have also been discussed. Our study provides a solid understanding of the coherent phonon transport behavior, which will be beneficial for phononic-related control based on coherent phonons.
机译:最近,正在努力增加控制热传输通过相干声子周期结构声子结构;观察相干声子传输实验非常困难的环境温度和连贯的重要性声子总热导率批判性评估日期。采用非平衡分子动力学模拟,我们研究了相干声子传输在一个C3N声子晶体(CNPnC)结构室温下通过改变孔隙度。洞被随机分布式构造无序C3N (D-C3N)结构本地化的相干声子被揭露出来了的声子透射系数,声子波包模拟、声子参与比能量密度和空间,导致在热显著减少导电性。温度和热应变电导率CNPnC D-C3N也进行了讨论。对相干声子传输的理解行为,这将是有益的基于相干phononic-related控制声子。

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