In silica glass fibers, thermally excited acoustic phonons scatter light into the beam propagating in the forward direction. At acoustic frequencies up to several hundreds of megahertz, the wave vectors of the phonons interacting with the light propagate essentially transversally to the fiber axis. This effect is known as Guided Acoustic Wave Brillouin Scattering (GAWBS) and leads to phase and polarization noise in the guided light. For fiber-based quantum optics experiments, this excess noise is a major limitation. In Photonic Crystal Fibers (PCFs), light is guided by a microstructure simultaneously acting as a 2D transversal phononic crystal which modifies the acoustic noise spectrum. We demonstrate a GAWBS-noise reduction in commercially...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
In silica glass fibers, thermally excited acoustic phonons scatter light into the beam propagating i...
Guided acoustic wave Brillouin scattering (GAWBS) generates phase and polarization noise of light pr...
Guided acoustic wave Brillouin scattering (GAWBS) generates phase and polarization noise of light pr...
Guided Acoustic Wave Brillouin Scattering (GAWBS) generates phase and polarization noise of light pr...
By performing quantum-noise-limited optical heterodyne detection, we observe polarization noise in l...
By performing quantum-noise-limited optical heterodyne detection, we observe polarization noise in l...
International audienceLike photonic crystals have revolutionized the way of manipulating optical wav...
International audienceWe experimentally show the existence of large and isolated guided acoustic wav...
International audienceWe study guided acoustic wave Brillouin scattering (GAWBS) in several photonic...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
In silica glass fibers, thermally excited acoustic phonons scatter light into the beam propagating i...
Guided acoustic wave Brillouin scattering (GAWBS) generates phase and polarization noise of light pr...
Guided acoustic wave Brillouin scattering (GAWBS) generates phase and polarization noise of light pr...
Guided Acoustic Wave Brillouin Scattering (GAWBS) generates phase and polarization noise of light pr...
By performing quantum-noise-limited optical heterodyne detection, we observe polarization noise in l...
By performing quantum-noise-limited optical heterodyne detection, we observe polarization noise in l...
International audienceLike photonic crystals have revolutionized the way of manipulating optical wav...
International audienceWe experimentally show the existence of large and isolated guided acoustic wav...
International audienceWe study guided acoustic wave Brillouin scattering (GAWBS) in several photonic...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Wavelength-scale periodic microstructuring dramatically alters the optical properties of materials. ...
Interactions between light and hypersonic waves can be enhanced by tight field confinement, as shown...