Saïd Idlahcen
Institut national des sciences appliquées de Rouen
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Featured researches published by Saïd Idlahcen.
Journal of The Optical Society of America A-optics Image Science and Vision | 2009
Saïd Idlahcen; Loïc Méès; Claude Rozé; Thierry Girasole; Jean-Bernard Blaisot
A method to distinguish a hidden object from a perturbing environment is to use an ultrashort femtosecond pulse of light and a time-resolved detection. To separate ballistic light containing information on a hidden object from multiscattered light coming from the surrounding environment that scrambles the signal, an optical Kerr gate can be used. It consists of a carbon disulfide (CS(2)) cell in which birefringence is optically induced. An imaging beam passes through the studied medium while a pump pulse is used to open the gate. The time-delayed scattered light is excluded from measurements by the gate, and the multiple-scattering scrambling effect is reduced. In previous works, the two beams had the same wavelength. We propose a new two-color experimental setup for ballistic imaging in which a second harmonic is generated and used for the image, while the fundamental is used for gate switching. This setup allows one to obtain better resolution by using a spectral filtering to eliminate noise from the pump pulse, instead of a spatial filtering. This new setup is suitable for use in ballistic imaging of dense sprays, multidiffusive, and large enough to show scattered light time delays greater than the gate duration (tau=1.3 ps).
Optics Express | 2014
Harsh Purwar; Saïd Idlahcen; Claude Rozé; David Sedarsky; Jean-Bernard Blaisot
Imaging with ultrashort exposure times is generally achieved with a crossed-beam geometry. In the usual arrangement, an off-axis gating pulse induces birefringence in a medium exhibiting a strong Kerr response (commonly carbon disulfide) which is followed by a polarizer aligned to fully attenuate the on-axis imaging beam. By properly timing the gate pulse, imaging light experiences a polarization change allowing time-dependent transmission through the polarizer to form an ultrashort image. The crossed-beam system is effective in generating short gate times, however, signal transmission through the system is complicated by the crossing angle of the gate and imaging beams. This work presents a robust ultrafast time-gated imaging scheme based on a combination of type-I frequency doubling and a collinear optical arrangement in carbon disulfide. We discuss spatial effects arising from crossed-beam Kerr gating, and examine the imaging spatial resolution and transmission timing affected by collinear activation of the Kerr medium, which eliminates crossing angle spatial effects and produces gate times on the order of 1 ps. In addition, the collinear, two-color system is applied to image structure in an optical fiber and a gasoline fuel spray, in order to demonstrate image formation utilizing ballistic or refracted light, selected on the basis of its transmission time.
ILASS2017 - 28th European Conference on Liquid Atomization and Spray Systems | 2017
Yujun Cao; Saïd Idlahcen; Jean-Bernard Blaisot; Claude Rozé; Loïc Méès; David Maligne
This work was supported by CANNEx program (ANR-13-TDMO-03), funded from French National Research Agency (ANR).
Experiments in Fluids | 2012
Saïd Idlahcen; Claude Rozé; Loïc Méès; Thierry Girasole; Jean-Bernard Blaisot
Experiments in Fluids | 2013
David Sedarsky; Saïd Idlahcen; Claude Rozé; Jean-Bernard Blaisot
Archive | 2008
Saïd Idlahcen; Jean Bernard Blaisot; Thierry Girasole; Claude Rozé; Loïc Méès
Atomization and Sprays | 2013
David Sedarsky; Alain Berlemont; Jean-Bernard Blaisot; Zakaria Bouali; Jean Cousin; P. Desjonqueres; M. Doring; Christophe Dumouchel; Saïd Idlahcen; N. Leboucher; Kamel Lounnaci; Thibaut Menard; Claude Rozé; G. Vaudor
arXiv: Optics | 2015
Harsh Purwar; Saïd Idlahcen; Claude Rozé; Jean-Bernard Blaisot
Atomization and Sprays | 2015
Kamel Lounnaci; Saïd Idlahcen; David Sedarsky; Claude Rozé; Jean-Bernard Blaisot; Francois-Xavier Demoulin
arXiv: Fluid Dynamics | 2012
David Sedarsky; Saïd Idlahcen; J-B. Blaisot; Claude Rozé