Molecular Quantum Wakes for Clearing Fog
arXiv:2004.04056 · doi:10.1364/OE.389393
Abstract
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.
References in corpus (6)
- Non-invasive real-time imaging through scattering layers and around corners via speckle correlations
- Ultrashort filaments of light in weakly-ionized, optically-transparent media
- Transmission-matrix-based point-spread-function engineering through a complex medium
- Generation of long-lived underdense channels using femtosecond filamentation in air
- High repetition rate ultrashort laser cuts a path through fog
- Conductivity and Discharge Guiding Properties of Mid-IR Laser Filaments