Scattering prevents light from being focused in turbid media. The effect of scattering can be negated through wavefront shaping techniques when a localized form of feedback is available. Even in the absence of such a localized reporter, wavefront shaping can blindly form a single diffraction-limited focus when the feedback response is nonlinear. We developed and experimentally validated a model that accurately describes the statistics of this blind focusing process. We show that maximizing the nonlinear feedback signal only results in the formation of a focus when a limited number of reporters are contributing to the signal. Using our model, we can calculate the minimal requirements for the number of controlled spatial light modulator segme...
In microscopy, light scattering sets the limit for the maximum imaging depth inside biological tissu...
Wavefront shaping is a technique to study and control light transport inside scattering media. Wavef...
This thesis deals with novel approaches to control wave propagation, in particular of light, in opaq...
Light scattering was thought to be the fundamental limitation for the depth at which optical imaging...
In this thesis, we explored the use of wavefront shaping to steer light through strongly scattering ...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...
Light propagation in materials with microscopic inhomogeneities is affected by scattering. In scatte...
It is well known that the propagation of light is scrambled while passing through a complex nanophot...
We report focusing of coherent light through opaque scattering materials by control of the incident ...
Traditional optical devices rely on light propagation along a straight path. However, when the light...
Wavefront shaping techniques are being actively developed to achieve optical focusing through and in...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...
Propagation of light through scattering media such as ground glass or biological tissue limits the q...
We study the effect of frequency detuning on light focused through turbid media. By shaping the wave...
International audienceWavefront shaping is a powerful method to refocus light through a scattering m...
In microscopy, light scattering sets the limit for the maximum imaging depth inside biological tissu...
Wavefront shaping is a technique to study and control light transport inside scattering media. Wavef...
This thesis deals with novel approaches to control wave propagation, in particular of light, in opaq...
Light scattering was thought to be the fundamental limitation for the depth at which optical imaging...
In this thesis, we explored the use of wavefront shaping to steer light through strongly scattering ...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...
Light propagation in materials with microscopic inhomogeneities is affected by scattering. In scatte...
It is well known that the propagation of light is scrambled while passing through a complex nanophot...
We report focusing of coherent light through opaque scattering materials by control of the incident ...
Traditional optical devices rely on light propagation along a straight path. However, when the light...
Wavefront shaping techniques are being actively developed to achieve optical focusing through and in...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...
Propagation of light through scattering media such as ground glass or biological tissue limits the q...
We study the effect of frequency detuning on light focused through turbid media. By shaping the wave...
International audienceWavefront shaping is a powerful method to refocus light through a scattering m...
In microscopy, light scattering sets the limit for the maximum imaging depth inside biological tissu...
Wavefront shaping is a technique to study and control light transport inside scattering media. Wavef...
This thesis deals with novel approaches to control wave propagation, in particular of light, in opaq...