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Imaging nanostructures with coherent phonon pulses

机译:用相干声子脉冲成像纳米结构

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We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency acoustic pulses are generated by impulsive thermoelastic excitation of a patterned 15-nm-thick metal film on a crystalline substrate using ultrafast optical pulses. The spatiotemporal diffracted acoustic strain field is measured on the opposite side of the substrate, and this field is used in a time-reversal algorithm to reconstruct the object. The image resolution is characterized using lithographically defined 1-micron-period Al structures on Si. Straightforward technical improvements should lead to resolution approaching 45 nm, extending the resolution of acoustic microscopy into the nanoscale regime.
机译:我们演示了使用皮秒声子声子脉冲的亚微米分辨率成像。高频声脉冲是通过使用超快光脉冲对晶体基板上的15纳米厚图案化金属膜进行脉冲热弹性激发而产生的。在基板的另一侧测量时空衍射声应变场,并将该场用于时间反转算法中以重建对象。使用在Si上光刻定义的1微米周期Al结构来表征图像分辨率。直截了当的技术改进应导致分辨率接近45 nm,从而将声学显微镜的分辨率扩展到纳米级。

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