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1.
Opt Lett ; 38(4): 437-9, 2013 Feb 15.
Artigo em Inglês | MEDLINE | ID: mdl-23455094

RESUMO

As manifested in the similarity relation of diffuse light transport, it is difficult to assess single scattering characteristics from multiply scattered light. We take advantage of the limited validity of the diffusion approximation of light transport and demonstrate, experimentally and numerically, that even deep into the multiple scattering regime, time-resolved detection of transmitted light allows simultaneous assessment of both single scattering anisotropy and scattering mean free path, and therefore also macroscopic parameters like the diffusion constant and the transport mean free path. This is achieved via careful assessment of early light and matching against Monte Carlo simulations of radiative transfer.

2.
Opt Lett ; 36(10): 1827-9, 2011 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-21593904

RESUMO

Local information on the coupling mechanism between the photonic crystal nanocavity and the feeding waveguide is crucial to enable further improvements of the performance of these systems. Although several investigations on such a coupling have already been performed, information on the local dynamic properties remains hidden. Here, we present a reciprocal space investigation of the dynamics of light side-coupled to a photonic crystal nanocavity. We find that the coupling is promoted by Bloch harmonics having greater transverse momentum.

3.
Phys Rev Lett ; 105(12): 123901, 2010 Sep 17.
Artigo em Inglês | MEDLINE | ID: mdl-20867640

RESUMO

We study the magnetic coupling between a metal-coated near-field probe and a photonic crystal nanocavity. The resonance of the nanocavity shifts to shorter wavelengths when the ringlike apex of the probe is above an antinode of the magnetic field of the cavity. We show that this can be attributed to a magnetic light-matter interaction and is in fact a manifestation of Lenz's law at optical frequencies. We use these measurements to determine the magnetic polarizability of the apex of the probe and find good agreement with theory. We discuss how this method could be applied to study the electric and magnetic polarizibilities of nano-objects.

4.
Phys Rev Lett ; 102(3): 033902, 2009 Jan 23.
Artigo em Inglês | MEDLINE | ID: mdl-19257355

RESUMO

With a phase-sensitive near-field microscope we measure independently the two in-plane electric field components of light propagating through a 2D photonic crystal waveguide and the phase difference between them. Consequently, we are able to reconstruct the electric vector field distribution with subwavelength resolution. In the complex field distribution we observe both time-dependent and time-independent polarization singularities and determine the topology of the surrounding electric field.


Assuntos
Campos Eletromagnéticos , Nanotecnologia/métodos , Modelos Teóricos , Nanotecnologia/instrumentação , Ondas de Rádio , Ondas de Maré
5.
Science ; 326(5952): 550-3, 2009 Oct 23.
Artigo em Inglês | MEDLINE | ID: mdl-19797622

RESUMO

Light is an electromagnetic wave composed of oscillating electric and magnetic fields, the one never occurring without the other. In light-matter interactions at optical frequencies, the magnetic component of light generally plays a negligible role. When we "see" or detect light, only its electric field is perceived; we are practically blind to its magnetic component. We used concepts from the field of metamaterials to probe the magnetic field of light with an engineered near-field aperture probe. We visualized with subwavelength resolution the magnetic- and electric-field distribution of propagating light.

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