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Analog time-reversed ultrasonically encoded light focusing inside scattering media with a 33,000× optical power gain

机译:经过时间反转的模拟超声编码光聚焦在散射介质内部,光功率增益为33,000倍

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Recent breakthrough in wavefront engineering shows great promises in controlling light propagation inside scattering media. At present, the digital approaches enjoy high gain, while their speeds are slow because of high data throughputs. In contrast, the analog approaches are intrinsically fast but suffer from poor efficiencies and small gains. Further improvements in both speed and gain are necessary to advance the existing technologies toward real-world applications. Here, we report analog time-reversal of acousto-optically tagged photons with a flux amplification of over 33,000 times (45?dB) at a target location inside scattering media. Such a substantial power gain enhancement is achieved when the temporal width of the time-reversed photon packet is squeezed below the carrier-recombination-limited hologram decay time in a photorefractive crystal. Despite a focusing energy gain below unity, the unprecedented power gain is expected to enable new optical imaging, sensing, manipulation and treatment applications.
机译:波前工程的最新突破显示出在控制光在散射介质内部传播的巨大前景。当前,数字方法享有很高的增益,而由于数据吞吐量高,它们的速度很慢。相反,模拟方法本质上是快速的,但效率低下且增益小。为了使现有技术向实际应用发展,必须进一步提高速度和增益。在这里,我们报告了声光标记光子在散射介质内部目标位置的通量放大超过33,000倍(45?dB)的模拟时间反转。当在光折射晶体中将时间反转的光子包的时间宽度压缩到载流子复合限制的全息图衰减时间以下时,可以实现这种显着的功率增益增强。尽管聚焦能量增益低于1,但空前的功率增益有望实现新的光学成像,传感,操纵和治疗应用。

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