Light-matter interactions inside a turbid medium can be controlled by tailoring the spatial distribution of energy density throughout the system. Wavefront shaping allows selective coupling of incident light to different transmission eigenchannels, producing dramatically different spatial intensity profiles. In contrast to the density of transmission eigenvalues that is dictated by the universal bimodal distribution, the spatial structures of the eigenchannels are not universal and depend on the confinement geometry of the system. Here, we develop and verify a model for the transmission eigenchannel with the corresponding eigenvalue close to unity. By projecting the original problem of two-dimensional diffusion in a homogeneous scattering m...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, ...
As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, ...
As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, ...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
We develop a comprehensive theoretical model for the maximum transmission eigenchannel and obtain a ...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
Transmission eigenchannels are building blocks of coherent wave transport in diffusive media, and se...
Light waves incident to a highly scattering medium are incapable of penetrating deep into the medium...
We demonstrate experimentally the efficient control of light intensity distribution inside a random ...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, ...
As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, ...
As the desire to explore opaque materials is ordinarily frustrated by multiple scattering of waves, ...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
We develop a comprehensive theoretical model for the maximum transmission eigenchannel and obtain a ...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...
Transmission eigenchannels are building blocks of coherent wave transport in diffusive media, and se...
Light waves incident to a highly scattering medium are incapable of penetrating deep into the medium...
We demonstrate experimentally the efficient control of light intensity distribution inside a random ...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...