Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of its internal energy distribution. The fluctuations and correlations of the eigenchannel\u27s spatial profiles, however, remain unexplored so far. Here we show that the depth profiles of high-transmission eigenchannels exhibit low realization-to-realization fluctuations. Furthermore, our experimental and numerical studies reveal the existence of interchannel correlations, which are significant for low-transmission eigenchannels. Because high-transmission eigenchannels are robust and independent from other eigenchannels, they can reliably deliver energy deep inside turbid media
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
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...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
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...
Supplementary Information included at the end of the documentInternational audienceWe show in microw...
Supplementary Information included at the end of the documentInternational audienceWe show in microw...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
Transmission eigenchannels are building blocks of coherent wave transport in diffusive media, and se...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
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...
Selective excitation of a diffusive system\u27s transmission eigenchannels enables manipulation of i...
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...
Supplementary Information included at the end of the documentInternational audienceWe show in microw...
Supplementary Information included at the end of the documentInternational audienceWe show in microw...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
Transmission eigenchannels are building blocks of coherent wave transport in diffusive media, and se...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
International audienceWe explore the spatial profile of the ensemble average of the energy density o...
International audienceAs the desire to explore opaque materials is ordinarily frustrated by multiple...