Filtering Random Matrices: The Effect of Incomplete Channel Control in Multiple Scattering
arXiv:1304.5562 · doi:10.1103/PhysRevLett.111.063901
Abstract
We present an analytic random matrix theory for the effect of incomplete channel control on the measured statistical properties of the scattering matrix of a disordered multiple-scattering medium. When the fraction of the controlled input channels, m1, and output channels, m2, is decreased from unity, the density of the transmission eigenvalues is shown to evolve from the bimodal distribution describing coherent diffusion, to the distribution characteristic of uncorrelated Gaussian random matrices, with a rapid loss of access to the open eigenchannels. The loss of correlation is also reflected in an increase in the information capacity per channel of the medium. Our results have strong implications for optical and microwave experiments on diffusive scattering media.
5 pages, 2 figures, + appendix
References in corpus (2)
Cited by in corpus (62)
- Light fields in complex media: mesoscopic scattering meets wave control
- Coherent perfect absorbers: linear control of light with light
- Complex wavefront engineering with disorder-engineered metasurfaces
- Recent advances in wavefront shaping techniques for biomedical applications
- Imaging With Nature: Compressive Imaging Using a Multiply Scattering Medium
- Large-Scale Optical Reservoir Computing for Spatiotemporal Chaotic Systems Prediction
- Spatiotemporal coherent control of light through a multiply scattering medium with the Multi-Spectral Transmission Matrix
- Coherent control of total transmission of light through disordered media
- Correlation-enhanced control of wave focusing in disordered media
- Full transmission and reflection of waves propagating through a maze of disorder
- Control of energy density inside disordered medium by coupling to open or closed channels
- Focusing of light energy inside a scattering medium by controlling the time-gated multiple light scattering
- Turning Optical Complex Media into Universal Reconfigurable Linear Operators by Wavefront Shaping
- Transverse localization of transmission eigenchannels
- Scattering invariant modes of light in complex media
- Transmission eigenchannels and the densities of states of random media
- Broadband Coherent Enhancement of Transmission and Absorption in Disordered Media
- The Single-Channel Regime of Transport through Random Media
- Depth-Targeted Energy Deposition Deep Inside Scattering Media
- Controlling light in complex media beyond the acoustic diffraction-limit using the acousto-optic transmission matrix
- Optimizing light storage in scattering media with the dwell-time operator
- Control of the temporal and polarization response of a multimode fiber
- Angular memory effect of transmission eigenchannels
- Coherent control of photocurrent in a strongly scattering photoelectrochemical system
- Spatially shaping waves to penetrate deep inside a forbidden gap
- Temporal recompression through a scattering medium via a broadband transmission matrix
- Measuring large optical reflection matrices of turbid media
- Selectively exciting quasi-normal modes in open disordered systems
- Highly-transmitting modes of light in dynamic atmospheric turbulence
- Control of mesoscopic transport by modifying transmission channels in opaque media
- Shape-dependence of transmission, reflection and absorption eigenvalue densities in disordered waveguides with dissipation
- Microwave conductance in random waveguides in the crossover to Anderson localization and single parameter scaling
- Optical transmission matrix as a probe of the photonic interaction strength
- Dynamic and spectral properties of transmission eigenchannels in random media
- Intensity-only measurement of partially uncontrollable transmission matrix: demonstration with wave-field shaping in a microwave cavity
- Statistics and control of waves in disordered media
- Mutual information between reflected and transmitted speckle images
- Effect of experimental parameters on optimal reflection of light from opaque media
- Coherent enhancement of optical remission in diffusive media
- Impact of non-Hemiticity on modal strength and correlation in transmission through random open cavities
- Full characterization of the transmission properties of a multi-plane light converter
- Optical transmission matrix measurement sampled on a dense hexagonal lattice
- Delivering Broadband Light Deep Inside Diffusive Media
- Transmission eigenvalues in random media with surface reflection
- Controlling transmission eigenchannels in random media by edge reflection
- Universal bounds for imaging in scattering media
- Diffusion in translucent media
- Transmission of quantum entanglement through a random medium
- Statistical Description of Transport in Multimode Fibers with Mode-Dependent Loss
- Measuring enhanced optical correlations induced by transmission open channels in a slab geometry
- Experimental evidence of enhanced broadband transmission in disordered systems with mirror symmetry
- Enhanced deep detection of Raman scattered light by wavefront shaping
- Resampling the transmission matrix in an aberration-corrected Bessel mode basis
- Energy-leaky modes in partially measured scattering matrices of disordered media
- Holistic random encoding for imaging through multimode fibers
- Integrated Random Projection and Dimensionality Reduction by Propagating Light in Photonic Lattices
- Controlled light scattering of a single nanoparticle by wavefront shaping
- Hidden Modes in Open Disordered Media: Analytical, Numerical, and Experimental Results
- Sum rules for energy deposition eigenchannels in scattering systems
- Radiant Field Theory: A Transport Approach to Shaped Wave Transmission through Disordered Media
- Transmission eigenvalue distribution in disordered media from radiant field theory
- Harnessing coherent-wave control for sensing applications