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Atypical thermal transport in Cu nanorods in the diffusive-ballistic crossover

机译:扩散弹道交叉中铜纳米棒中的非典型热传输

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摘要

We propose a simple theoretical calculation scheme based on the phenomenological Fourier heat-flow formalism to study thermal transport behaviors in nanoscale copper rods. The axial heat transport is characterized by a new super-oscillatory feature along with small-amplitude heat spikes. It is anticipated that these atypical spikes are generated by accumulation of localized "hotspots" that have low heat dissipation characteristics. In the case of radial transport, we witness the existence of three distinct heat regimes owing to buildup of hot electrons after experiencing ballistic scattering events. It is important to note that, even though the nanorod diameter is comparable to or smaller than the electron mean free path length, lambda(mfp) similar to 30 nm; multiple ballistic electronic scattering from the outer surface of the nanorods and subsequent accrual into several layers through secondary collisional events has led to concentric heat zones. The hotspots disappear when the nanorod diameter exceeds lambda(mfp).
机译:我们提出了一种基于现象学傅立叶热流形式主义的简单理论计算方案,以研究纳米级铜棒中的热传输行为。轴向传热的特点是具有新的超振荡功能以及小幅度的热尖峰。可以预料到,这些非典型的尖峰是由具有低散热特性的局部“热点”的累积所产生的。在径向传输的情况下,由于经历了弹道散射事件后热电子的积累,我们看到了三种不同的热态的存在。重要的是要注意,即使纳米棒的直径等于或小于电子平均自由程长度,lambda(mfp)也类似于30 nm。来自纳米棒外表面的多次弹道电子散射以及随后通过次要碰撞事件累加成几层,导致形成同心加热区。当纳米棒直径超过λ(mfp)时,热点消失。

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