The structure of a light field in sea water excited by a unidirectional point-sized pulsed source is studied by Monte Carlo technique. The pulse shape registered at the distances up to 120 m from the source on the beam axis and in its axial region is calculated with a time resolution of 1 ps. It is shown that with the increase of the distance from the source the pulse splits into two parts formed by components of various scattering orders. Frequency and phase responses of the beam are calculated by means of the fast Fourier transform. It is also shown that for higher frequencies, the attenuation of harmonic components of the field is larger. In the range of parameters corresponding to pulse splitting on the beam axis, the attenuation of har...
In the paper the investigation results of the influence of such parameters as shape and size of the ...
The self-action of the pulsed conical beam in the nonlinear medium is theoretically analysed. The re...
Based on the extended Huygens–Fresnel principle, the cross-spectral density function of a partially ...
In this paper, we study influences of inherent optical properties (IOP) of seawater and parameters o...
An ultrashort laser pulse generally refers to the optical pulse containing just a few cycles of opti...
A Monte Carlo model has been developed for calculating the penetration of light into the ocean. For ...
The statistical properties of the pulse scattering from a rough dynamic sea surface are researched ....
We study the signais received on a large array far away in the sea for transmitted signais low frequ...
The Localized Wave pulse project has created the concept of highly localized, pulsed wave energy. We...
We present an overview of our very recent results on the evolution of ultrashort pulses after propag...
The problem of identifying and quantifying of coherent surface water wave patterns is considered bas...
The authors report a new theory that describes the scattering of an upward propagating laser beam fr...
Until now, few rigorous studies of the precursors in structures exhibiting superluminal group veloci...
In the paper the investigation results of the influence of such parameters as shape and size of the ...
Scattering by water molecules and particulate matters determines the path and distance of photon pro...
In the paper the investigation results of the influence of such parameters as shape and size of the ...
The self-action of the pulsed conical beam in the nonlinear medium is theoretically analysed. The re...
Based on the extended Huygens–Fresnel principle, the cross-spectral density function of a partially ...
In this paper, we study influences of inherent optical properties (IOP) of seawater and parameters o...
An ultrashort laser pulse generally refers to the optical pulse containing just a few cycles of opti...
A Monte Carlo model has been developed for calculating the penetration of light into the ocean. For ...
The statistical properties of the pulse scattering from a rough dynamic sea surface are researched ....
We study the signais received on a large array far away in the sea for transmitted signais low frequ...
The Localized Wave pulse project has created the concept of highly localized, pulsed wave energy. We...
We present an overview of our very recent results on the evolution of ultrashort pulses after propag...
The problem of identifying and quantifying of coherent surface water wave patterns is considered bas...
The authors report a new theory that describes the scattering of an upward propagating laser beam fr...
Until now, few rigorous studies of the precursors in structures exhibiting superluminal group veloci...
In the paper the investigation results of the influence of such parameters as shape and size of the ...
Scattering by water molecules and particulate matters determines the path and distance of photon pro...
In the paper the investigation results of the influence of such parameters as shape and size of the ...
The self-action of the pulsed conical beam in the nonlinear medium is theoretically analysed. The re...
Based on the extended Huygens–Fresnel principle, the cross-spectral density function of a partially ...