论文标题

使用光谱法评估声子相干性

Assessing Phonon Coherence Using Spectroscopy

论文作者

Zhang, Zhongwei, Guo, Yangyu, Bescond, Marc, Nomura, Masahiro, Volz, Sebastian, Chen, Jie

论文摘要

作为热声子的基本物理量,时间连贯性参与了广泛的热和语音过程,而仍然缺乏用于测量声子相干性的清晰方法。在此Lettter中,我们得出了基于光谱的实验探索实验探索的理论模型,然后通过与Brillouin光散射数据和纳米结构中密闭模式的直接分子动态模拟进行比较来验证。提出的模型突出显示了限制模式的模型表现出明显的波浪行为,其特征在于相干时间与生命周期的比例更高。从光谱数据数据也证明了声子相干性对系统大小的依赖性。提出的理论允许重新评估常规光谱的数据以产生相干时间,这对于一般的固体中对声子特征和热传输的估计至关重要。

As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad range of thermal and phononic processes, while a clear methodology for the measurement of phonon coherence is still lacking. In this Lettter, we derive a theoretical model for the experimental exploration of phonon coherence based on spectroscopy, which is then validated by comparison with Brillouin light scattering data and direct molecular dynamic simulations of confined modes in nanostructures. The proposed model highlights that confined modes exhibit a pronounced wavelike behavior characterized by a higher ratio of coherence time to lifetime. The dependence of phonon coherence on system size is also demonstrated from spectroscopy data. The proposed theory allows for reassessing data of conventional spectroscopy to yield coherence times, which are essential for the understanding and the estimation of phonon characteristics and heat transport in solids in general.

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