论文标题

用于清除雾的分子量子唤醒

Molecular Quantum Wakes for Clearing Fog

论文作者

Schroeder, Malte C., Larkin, Ilia, Produit, Thomas, Rosenthal, Eric W., Milchberg, Howard, Wolf, Jean-Pierre

论文摘要

空气中的高强度激光丝最近证明,通过血浆产生及其相关的冲击波,可以在光束周围清除雾,从而留下光学透明的路径以传输光线。但是,对于诸如自由空间光学通信(FSO)之类的实际应用,需要在公里范围内的多厘米直径的通道,这对于基于等离子体的方法非常具有挑战性。在这里,我们根据量子控制报告了一种根本不同的方法。我们证明,还可以通过在空气中产生分子量子唤醒来实现雾气清除,并且不需要等离子体产生或细丝。该效果显然与N2的旋转波数据包的重塑时间有关。以复兴时间分隔的8个脉冲的谐振火车的形式提供的pump激发可以通过雾传输光学数据,并以最初的灭绝为-6 dB。

High intensity laser filamentation in air has recently demonstrated that, through plasma generation and its associated shockwave, fog can be cleared around the beam, leaving an optically transparent path to transmit light. However, for practical applications like free-space optical communication (FSO), channels of multi-centimeter diameters over kilometer ranges are required, which is extremely challenging for a plasma based method. Here we report a radically different approach, based on quantum control. We demonstrate that fog clearing can also be achieved by producing molecular quantum wakes in air, and that neither plasma generation nor filamentation are required. The effect is clearly associated with the rephasing time of the rotational wave packet in N2.Pump excitation provided in the form of resonant trains of 8 pulses separated by the revival time are able to transmit optical data through fog with initial extinction as much as -6 dB.

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