We demonstrate experimentally that optical wavefront shaping increases light coupling into the fundamental diffusion mode of a scattering medium. The total energy density inside a scattering medium of zinc oxide nanoparticles was probed by exciting fluorescent spheres that were randomly positioned in the medium and collecting the fluorescent power. We optimized the incident wavefront to obtain a bright focus at the back surface of the sample and found that the concomitant fluorescent power is enhanced compared to a non-optimized incident wavefront. The observed enhancement increases with sample thickness. Based on diffusion theory, we derive a model wherein the distribution of the energy density of wavefront-shaped light is dominated by the...
We experimentally observe the spatial intensity statistics of light transmitted through three-dimens...
We experimentally observe the spatial intensity statistics of light transmitted through three-dimens...
Motivated by the ongoing debate about nanophotonic control of Foerster resonance energy transfer (FR...
We demonstrate experimentally that optical wavefront shaping increases light coupling into the funda...
We demonstrate experimentally that optical wavefront shaping selectively couples light into the fund...
While a three-dimensional (3D) scattering medium is from the outset opaque, such a medium sustains i...
This thesis presents experimental investigations into the propagation of light inside both disordere...
The recent advent of wave-shaping methods has demonstrated the focusing of light through and inside ...
Excitons spread through diffusion and interact through exciton-exciton annihilation. Nanophotonics c...
Excitons spread through diffusion and interact through exciton-exciton annihilation. Nanophotonics c...
Tailoring the light–matter interaction and the local density of optical states (LDOS) with nanophoto...
Light propagation in materials with microscopic inhomogeneities is affected by scattering. In scatte...
We demonstrate experimentally the efficient control of light intensity distribution inside a random ...
We experimentally observe the spatial intensity statistics of light transmitted through three-dimens...
We experimentally observe the spatial intensity statistics of light transmitted through three-dimens...
Motivated by the ongoing debate about nanophotonic control of Foerster resonance energy transfer (FR...
We demonstrate experimentally that optical wavefront shaping increases light coupling into the funda...
We demonstrate experimentally that optical wavefront shaping selectively couples light into the fund...
While a three-dimensional (3D) scattering medium is from the outset opaque, such a medium sustains i...
This thesis presents experimental investigations into the propagation of light inside both disordere...
The recent advent of wave-shaping methods has demonstrated the focusing of light through and inside ...
Excitons spread through diffusion and interact through exciton-exciton annihilation. Nanophotonics c...
Excitons spread through diffusion and interact through exciton-exciton annihilation. Nanophotonics c...
Tailoring the light–matter interaction and the local density of optical states (LDOS) with nanophoto...
Light propagation in materials with microscopic inhomogeneities is affected by scattering. In scatte...
We demonstrate experimentally the efficient control of light intensity distribution inside a random ...
We experimentally observe the spatial intensity statistics of light transmitted through three-dimens...
We experimentally observe the spatial intensity statistics of light transmitted through three-dimens...
Motivated by the ongoing debate about nanophotonic control of Foerster resonance energy transfer (FR...