We selectively generate chiral surface-acoustic whispering gallery modes in the gigahertz range on a microscopic disk by means of an ultrafast time-domain technique incorporating a spatial light modulator. Active chiral control is achieved by making use of an optical pump spatial profile in the form of a semicircular arc, positioned on the sample to break the symmetry of clockwise- and counterclockwise-propagating modes. Spatiotemporal Fourier transforms of the interferometrically monitored two-dimensional acoustic fields measured to micron resolution allow individual chiral modes and their azimuthal mode order, both positive and negative, to be distinguished. In particular, for modes with 15-fold rotational symmetry, we demonstrate ultrafa...
We present and analyze a technique to drive high-order harmonics by laser pulses with an angular spa...
International audienceAcousto-optic deflection (AOD) devices offer unprecedented fast control of the...
Nonreciprocal microwave devices are key components of communication platforms. Nonreciprocity can ar...
We selectively generate chiral surface-acoustic whispering gallery modes in the gigahertz range on a...
Continued progress in photon science demands advances in light source technology. For this purpose, ...
Wide-passband interdigital transducers are employed to establish a stable phase lock between a train...
Broadband coherent surface phonon wave packets up to 1 GHz in a microscopic embedded disk are excite...
We develop a finite difference time domain simulation algorithm to simulate photonic structures in a...
International audienceOptical activity requires chirality and is a paradigm for chirality. Here, we ...
An Archimedes’ Screw captures water, feeding energy into it by lifting it to a higher level. We intr...
The full development of mono- or multi-dimensional time-resolved spectroscopy techniques incorporati...
We present a novel chiral sensing platform that combines a one-dimensional photonic crystal design w...
The possibility of creating and manipulating nanostructured materials encouraged the exploration of ...
We present and analyze a technique to drive high-order harmonics by laser pulses with an angular spa...
International audienceAcousto-optic deflection (AOD) devices offer unprecedented fast control of the...
Nonreciprocal microwave devices are key components of communication platforms. Nonreciprocity can ar...
We selectively generate chiral surface-acoustic whispering gallery modes in the gigahertz range on a...
Continued progress in photon science demands advances in light source technology. For this purpose, ...
Wide-passband interdigital transducers are employed to establish a stable phase lock between a train...
Broadband coherent surface phonon wave packets up to 1 GHz in a microscopic embedded disk are excite...
We develop a finite difference time domain simulation algorithm to simulate photonic structures in a...
International audienceOptical activity requires chirality and is a paradigm for chirality. Here, we ...
An Archimedes’ Screw captures water, feeding energy into it by lifting it to a higher level. We intr...
The full development of mono- or multi-dimensional time-resolved spectroscopy techniques incorporati...
We present a novel chiral sensing platform that combines a one-dimensional photonic crystal design w...
The possibility of creating and manipulating nanostructured materials encouraged the exploration of ...
We present and analyze a technique to drive high-order harmonics by laser pulses with an angular spa...
International audienceAcousto-optic deflection (AOD) devices offer unprecedented fast control of the...
Nonreciprocal microwave devices are key components of communication platforms. Nonreciprocity can ar...