Diffusion makes it difficult to predict and control wave transport through a medium. Overcoming wave diffusion to deliver energy into a target region deep inside a diffusive system is an important challenge for applications, but also represents an interesting fundamental question. It is known that coherently controlling the incident wavefront allows diffraction-limited focusing inside a diffusive system, but in many applications, the targets are significantly larger than a focus and the maximum deliverable energy remains unknown. Here we introduce the ‘deposition matrix’, which maps an input wavefront to the internal field distribution, and we theoretically predict the ultimate limit on energy enhancement at any depth. Additionally, we find...
We discover transverse localization of transmission eigenchannels in wide diffusive slabs and study ...
We demonstrate that interplay between absorption and scattering in a dielectric medium with a micros...
We demonstrate experimentally that optical wavefront shaping selectively couples light into the fund...
A grand challenge in fundamental physics and practical applications is overcoming wave diffusion to ...
We show that the spatial distribution of the energy density of optimally shaped waves inside a scatt...
We show that the spatial distribution of the energy density of optimally shaped waves inside a scatt...
Light-matter interactions inside a turbid medium can be controlled by tailoring the spatial distribu...
The recent advent of wave-shaping methods has demonstrated the focusing of light through and inside ...
The efficient delivery of light energy is a prerequisite for the non-invasive imaging and stimulatin...
This thesis presents experimental investigations into the propagation of light inside both disordere...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
The impact of surface reflection upon transmission through and energy distributions within random me...
We discover transverse localization of transmission eigenchannels in wide diffusive slabs and study ...
We demonstrate that interplay between absorption and scattering in a dielectric medium with a micros...
We demonstrate experimentally that optical wavefront shaping selectively couples light into the fund...
A grand challenge in fundamental physics and practical applications is overcoming wave diffusion to ...
We show that the spatial distribution of the energy density of optimally shaped waves inside a scatt...
We show that the spatial distribution of the energy density of optimally shaped waves inside a scatt...
Light-matter interactions inside a turbid medium can be controlled by tailoring the spatial distribu...
The recent advent of wave-shaping methods has demonstrated the focusing of light through and inside ...
The efficient delivery of light energy is a prerequisite for the non-invasive imaging and stimulatin...
This thesis presents experimental investigations into the propagation of light inside both disordere...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
The impact of surface reflection upon transmission through and energy distributions within random me...
We discover transverse localization of transmission eigenchannels in wide diffusive slabs and study ...
We demonstrate that interplay between absorption and scattering in a dielectric medium with a micros...
We demonstrate experimentally that optical wavefront shaping selectively couples light into the fund...