International audienceWe study theoretically and numerically third-harmonic generation (THG) from model geometries (interfaces, slabs, periodic media) illuminated by Bessel beams produced by focusing an annular intensity profile. Bessel beams exhibit a phase and intensity distribution near focus different from Gaussian beams, resulting in distinct THG phase matching properties and coherent scattering directions. Excitation wave vectors are controlled by adjusting the bounding aperture angles of the Bessel beam. In addition to extended depth-of-field imaging, this opens interesting perspectives for coherent nonlinear microscopy, such as extracting sample spatial frequencies in the λ/8 - λ range in the case of organized media. © 2012 OS
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
[EN] We report zero-th and high-order acoustic Bessel beams with broad depth-of-field generated usin...
International audienceWe study theoretically and numerically third-harmonic generation (THG) from mo...
International audienceWe use a vector field model to analyze third-harmonic generation (THG) from mo...
<p>(<b>a</b>) Schematic representation of the non-linear microscope configuration. Two paths are use...
Nonlinear microscopy has become an indispensable tool in the study of biological systems. It include...
Third Harmonic Generation (THG) from the vicinity of interfaces, using focused laser beams can be ob...
International audienceecond-harmonic generation (SHG) is the most specific label-free indicator of c...
Bessel beams are attaining keen interest in the current era considering their unique non-diffractive...
International audienceWe characterize experimentally the influence of sample structure and beam focu...
We investigated the frequency-doubling properties of light beams whose transverse profile is given b...
We present the results of a numerical simulation tool for modeling the second-harmonic generation (S...
Third-harmonic (TH) generation microscopy is a highly versatile technique with a broad range of appl...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
[EN] We report zero-th and high-order acoustic Bessel beams with broad depth-of-field generated usin...
International audienceWe study theoretically and numerically third-harmonic generation (THG) from mo...
International audienceWe use a vector field model to analyze third-harmonic generation (THG) from mo...
<p>(<b>a</b>) Schematic representation of the non-linear microscope configuration. Two paths are use...
Nonlinear microscopy has become an indispensable tool in the study of biological systems. It include...
Third Harmonic Generation (THG) from the vicinity of interfaces, using focused laser beams can be ob...
International audienceecond-harmonic generation (SHG) is the most specific label-free indicator of c...
Bessel beams are attaining keen interest in the current era considering their unique non-diffractive...
International audienceWe characterize experimentally the influence of sample structure and beam focu...
We investigated the frequency-doubling properties of light beams whose transverse profile is given b...
We present the results of a numerical simulation tool for modeling the second-harmonic generation (S...
Third-harmonic (TH) generation microscopy is a highly versatile technique with a broad range of appl...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
We present a simple method using an axicon and spatial light modulator to create multiple parallel B...
[EN] We report zero-th and high-order acoustic Bessel beams with broad depth-of-field generated usin...