We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimensional photonic crystal microcavity induced by the introduction of a subwavelength size glass tip. The comparison between experimental near-field data, collected with ? 6 spatial resolution, and results of numerical calculations shows that the spectral shift induced by the tip is proportional to the local electric field intensity of the cavity mode. This observation proves that the electromagnetic local density of states in a microcavity can be directly measured by mapping the tip-induced spectral shift with a scanning near-field optical microscope
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
We experimentally observe a sizable and reversible spectral tuning of the resonances of a two-dimens...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
In this work we present a sizeable and reversible spectral tuning of the resonances of a two-dimensi...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...
We report on a nonlinear way to control and tune the dielectric environment of photonic crystalmicro...