Light scattering is the main limitation for optical imaging. However, light can be focused through or inside turbid media by spatially shaping the incident wavefront. Wavefront shaping is ultimately limited by the available photon budget. We developed a new 'dual reference' wavefront shaping algorithm that optimally uses the available light. Our method allows for multi-target wavefront shaping, making it suitable for transmission matrix measurements or transmitting images. We experimentally confirmed the improvement of the focus intensity compared to existing methods
Wavefront shaping techniques are being actively developed to achieve optical focusing through and in...
Scattering prevents light from being focused in turbid media. The effect of scattering can be negate...
Wave front shaping holds great potential for high-resolution imaging or light delivery either throug...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...
Wavefront shaping is a technique to study and control light transport inside scattering media. Wavef...
Wavefront shaping is a promising technique invented circa ten years ago which enables us for example...
Traditional optical devices rely on light propagation along a straight path. However, when the light...
Light scattering was thought to be the fundamental limitation for the depth at which optical imaging...
It is well known that the propagation of light is scrambled while passing through a complex nanophot...
Wavefront shaping is increasingly being used in modern microscopy to obtain distortion-free, highres...
Imaging and transport light through scattering opaque media is a hot topic pursued in multiple field...
Aberrations and scattering limit the ability of optical microscopy to penetrate deep tissues. Adapti...
In microscopy, light scattering sets the limit for the maximum imaging depth inside biological tissu...
We report an alternative experimental setup to laterally focus light at an angle of 90 deg relative ...
In this thesis, we explored the use of wavefront shaping to steer light through strongly scattering ...
Wavefront shaping techniques are being actively developed to achieve optical focusing through and in...
Scattering prevents light from being focused in turbid media. The effect of scattering can be negate...
Wave front shaping holds great potential for high-resolution imaging or light delivery either throug...
The holy grail of biomedical optical imaging is to perform microscopy deep inside living tissue. Bio...
Wavefront shaping is a technique to study and control light transport inside scattering media. Wavef...
Wavefront shaping is a promising technique invented circa ten years ago which enables us for example...
Traditional optical devices rely on light propagation along a straight path. However, when the light...
Light scattering was thought to be the fundamental limitation for the depth at which optical imaging...
It is well known that the propagation of light is scrambled while passing through a complex nanophot...
Wavefront shaping is increasingly being used in modern microscopy to obtain distortion-free, highres...
Imaging and transport light through scattering opaque media is a hot topic pursued in multiple field...
Aberrations and scattering limit the ability of optical microscopy to penetrate deep tissues. Adapti...
In microscopy, light scattering sets the limit for the maximum imaging depth inside biological tissu...
We report an alternative experimental setup to laterally focus light at an angle of 90 deg relative ...
In this thesis, we explored the use of wavefront shaping to steer light through strongly scattering ...
Wavefront shaping techniques are being actively developed to achieve optical focusing through and in...
Scattering prevents light from being focused in turbid media. The effect of scattering can be negate...
Wave front shaping holds great potential for high-resolution imaging or light delivery either throug...