We present a detailed study of the Baryscan technique, a new efficient alternative to the widespread Z-scan technique which has been demonstrated [Opt. Lett. 36:8, 2011] to reach among the highest sensitivity levels. This method is based upon the measurement of optical nonlinearities by means of beam centroid displacements with a position sensitive detector and is able to deal with any kind of lensing effect. This technique is applied here to measure pump-induced electronic refractive index changes (population lens), which can be discriminated from parasitic thermal effects by using a time-resolved Baryscan experiment. This method is validated by evaluating the polarizability variation at the origin of the population lens observed in the re...
We modify the well-known photothermal beam deflection technique to study ultrafast nonlinearities. U...
When a high power laser beam goes through a transparent material, self-focusing may lead to a degrad...
We modify the photothermal beam deflection technique for the sensitive measurement of ultrafast nonl...
We present a detailed study of the Baryscan technique, a new efficient alternative to the widespread...
In ion-doped solid-state laser materials, the pump-induced refractive index changes (RIC) have an el...
International audienceA new and efficient technique for measuring weak optical nonlinearities is rep...
The propagation of an optical beam through dielectric media induces changes in the refractive index,...
A new method of studying thermal-gradient-induced lensing in laser crystals is reported. The method ...
A new method of studying thermal-gradient-induced lensing in laser crystals is reported. The method ...
International audienceThis work presents an original, comparative study between two optical techniqu...
A simple, highly sensitive method is proposed for studying nonlinear refraction in materials. In a t...
To study the contribution of nonlinear effects to laser damage or predict ultrafast pulses evolution...
Several experiments (time-resolved Z-scan experiments based on pulsed and CW pump lasers, time-resol...
Nonlinear optical properties are crucial in determining the behavior of the optical material under t...
We modify the well-known photothermal beam deflection technique to study ultrafast nonlinearities. U...
We modify the well-known photothermal beam deflection technique to study ultrafast nonlinearities. U...
When a high power laser beam goes through a transparent material, self-focusing may lead to a degrad...
We modify the photothermal beam deflection technique for the sensitive measurement of ultrafast nonl...
We present a detailed study of the Baryscan technique, a new efficient alternative to the widespread...
In ion-doped solid-state laser materials, the pump-induced refractive index changes (RIC) have an el...
International audienceA new and efficient technique for measuring weak optical nonlinearities is rep...
The propagation of an optical beam through dielectric media induces changes in the refractive index,...
A new method of studying thermal-gradient-induced lensing in laser crystals is reported. The method ...
A new method of studying thermal-gradient-induced lensing in laser crystals is reported. The method ...
International audienceThis work presents an original, comparative study between two optical techniqu...
A simple, highly sensitive method is proposed for studying nonlinear refraction in materials. In a t...
To study the contribution of nonlinear effects to laser damage or predict ultrafast pulses evolution...
Several experiments (time-resolved Z-scan experiments based on pulsed and CW pump lasers, time-resol...
Nonlinear optical properties are crucial in determining the behavior of the optical material under t...
We modify the well-known photothermal beam deflection technique to study ultrafast nonlinearities. U...
We modify the well-known photothermal beam deflection technique to study ultrafast nonlinearities. U...
When a high power laser beam goes through a transparent material, self-focusing may lead to a degrad...
We modify the photothermal beam deflection technique for the sensitive measurement of ultrafast nonl...