Perrin B, Péronne E, Belliard L
Institut des NanoSciences de Paris, UMR 7588, de l'Université Pierre & Marie Curie et du CNRS, Paris, France.
Ultrasonics. 2006 Dec 22;44 Suppl 1:e1277-81. doi: 10.1016/j.ultras.2006.05.081. Epub 2006 Jun 5.
In picosecond ultrasonics experiments the absorption of a femtosecond laser pulse in a thin metallic transducer is used to generate very short acoustic pulses. These pulses are made of coherent longitudinal waves with a frequency spectrum that can reach 100-200 GHz. The laser pulse absorption gives rise to a heating of the film of a few Kelvin within a typical time of 1 ps. Later on, the heat goes in the substrate through an interface thermal resistance and is diffused by thermal conduction. At very low temperature and in pure crystals the thermal phonons emitted by the heated metallic film can propagate ballistically over large distances and produce a so-called heat pulse. We report on the experimental evidence of the coexistence of the coherent acoustic pulse and the incoherent heat pulse generated and detected by laser ultrasonics.
在皮秒超声实验中,利用飞秒激光脉冲在薄金属换能器中的吸收来产生非常短的声脉冲。这些脉冲由频率谱可达100 - 200 GHz的相干纵波组成。激光脉冲吸收在典型的1皮秒时间内使薄膜升温几开尔文。随后,热量通过界面热阻进入衬底并通过热传导扩散。在极低温和纯净晶体中,受热金属薄膜发射的热声子可以弹道式传播很长距离并产生所谓的热脉冲。我们报告了激光超声产生和检测到的相干声脉冲与非相干热脉冲共存的实验证据。