We study the effect of frequency detuning on light focused through turbid media. By shaping the wavefront of the incident beam light is focused through an opaque scattering layer. When detuning the laser we observe a gradual decrease of the focus intensity, while the position, size,and shape of the focus remain the same within experimental accuracy. The frequency dependence of the focus intensity follows a measured speckle correlation function. We support our experimental findings with calculations based on transport theory. Our results imply wavefront shaping methods can be generalized to allow focusing of optical pulses in turbid media
Focusing control of ultrashort pulsed beams is an important research topic, due to its impact to su...
We study the possibility of manipulating the focusing properties of a medium with electromagneticall...
Optical focusing beyond superficial depths in biological tissue is challenging due to the strong opt...
We study the effect of frequency detuning on light focused through turbid media. By shaping the wave...
Light propagation in materials with microscopic inhomogeneities is affected by scattering. In scatte...
We demonstrate controlled wavelength-dependent light focusing through turbid media using wavefront s...
It is well known that the propagation of light is scrambled while passing through a complex nanophot...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...
A framework is developed that combines electric field Monte Carlo simulations of random scattering w...
Scattering prevents light from being focused in turbid media. The effect of scattering can be negate...
This thesis deals with novel approaches to control wave propagation, in particular of light, in opaq...
The focusing of light into a turbid medium was studied with Monte Carlo simulations. Focusing was fo...
The recent advent of wave-shaping methods has demonstrated the focusing of light through and inside ...
Optical microscopy and manipulation methods rely on the ability to focus light to a small volume. Ho...
Focusing scattered light using wavefront shaping provides interesting perspectives to image deep in ...
Focusing control of ultrashort pulsed beams is an important research topic, due to its impact to su...
We study the possibility of manipulating the focusing properties of a medium with electromagneticall...
Optical focusing beyond superficial depths in biological tissue is challenging due to the strong opt...
We study the effect of frequency detuning on light focused through turbid media. By shaping the wave...
Light propagation in materials with microscopic inhomogeneities is affected by scattering. In scatte...
We demonstrate controlled wavelength-dependent light focusing through turbid media using wavefront s...
It is well known that the propagation of light is scrambled while passing through a complex nanophot...
In turbid media, light gets multiply scattered to an extent that all the information of its propagat...
A framework is developed that combines electric field Monte Carlo simulations of random scattering w...
Scattering prevents light from being focused in turbid media. The effect of scattering can be negate...
This thesis deals with novel approaches to control wave propagation, in particular of light, in opaq...
The focusing of light into a turbid medium was studied with Monte Carlo simulations. Focusing was fo...
The recent advent of wave-shaping methods has demonstrated the focusing of light through and inside ...
Optical microscopy and manipulation methods rely on the ability to focus light to a small volume. Ho...
Focusing scattered light using wavefront shaping provides interesting perspectives to image deep in ...
Focusing control of ultrashort pulsed beams is an important research topic, due to its impact to su...
We study the possibility of manipulating the focusing properties of a medium with electromagneticall...
Optical focusing beyond superficial depths in biological tissue is challenging due to the strong opt...