Masim Frances Camille P, Hsu Wei-Hung, Liu Hao-Li, Yonezawa Tetsu, Balčytis Armandas, Juodkazis Saulius, Hatanaka Koji
Opt Express. 2017 Aug 7;25(16):19497-19507. doi: 10.1364/OE.25.019497.
Photoacoustic signal enhancements were observed with a pair of time-delayed femtosecond pulses upon excitation of gold nanosphere colloidal suspension. A systematic experimental investigation of photoacoustic intensity within the delay time, Δt = 0 to 15 ns, was carried out. The results revealed a significant enhancement factor of ∼2 when the pre-pulse energy is 20-30% of the total energy. Pre-pulse and main pulse energy ratios, Ep(1):Es(2), were varied to determine the optimal ratio that yields to maximum photoacoustic signal enhancement. This enhancement was ascribed to the initial stage of thermalization and bubble generation in the nanosecond time scale. Pre-pulse scattering intensity measurements and numerical finite-difference time-domain calculations were performed to reveal dynamics and light field enchancement, respectively.
在用一对具有时间延迟的飞秒脉冲激发金纳米球胶体悬浮液时,观察到了光声信号增强。对延迟时间Δt = 0至15 ns内的光声强度进行了系统的实验研究。结果表明,当前脉冲能量为总能量的20 - 30%时,光声增强因子显著约为2。改变前脉冲与主脉冲能量比Ep(1):Es(2),以确定产生最大光声信号增强的最佳比例。这种增强归因于纳秒时间尺度内热化和气泡产生的初始阶段。分别进行了前脉冲散射强度测量和数值有限差分时域计算,以揭示动力学和光场增强情况。