International audienceTime resolved images of acoustic waves in the 100 MHz-2.2 GHz range are obtained for an electrically excited thin-film bulk acoustic wave resonator by means of an ultrafast optical technique. Electrical pulses, synchronized to ultrashort laser pulses, piezoelectrically excite the device, and synchronous near-infrared laser pulses interferometrically detect surface motion. The frequency dispersion is extracted using spatiotemporal Fourier transforms, revealing both longitudinal and surface acoustic modes
Techniques based on laser-induced surface acoustic waves have been developed with the potential for ...
Ultrafast laser-induced guided acoustic waves in thin, freely suspended films are important for many...
A heterodyne laser interferometer is used to study acoustic wave fields excited in a 1.8 GHz AlN thi...
A full-field view laser ultrasonic imaging method has been developed that measures acoustic motion a...
Film Bulk Acoustic Resonators are useful for many signal processing applications. Detailed knowledge...
A compact femtosecond dual-oscillator pump-probe setup with 48 MHz-repetition rate, relying on async...
A compact femtosecond dual-oscillator pump-probe setup with 48 MHz-repetition rate, relying on async...
A compact femtosecond dual-oscillator pump-probe setup with 48 MHz-repetition rate, relying on async...
We image gigahertz surface acoustic waves normally incident on a microscopic linear array of triangu...
Ultrafast laser pulses incident on metals can lead to the generation of coherent phonon wave packets...
The detection of ultrashort laser-generated acoustic pulses at a metal surface and the reconstructio...
Focusing of high-amplitude surface acoustic waves leading to material damage is visualized in an all...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
Acoustic wave fields in a thin-film bulk acoustic wave resonator are studied using a heterodyne lase...
Acoustic wave fields in a thin-film bulk acoustic wave resonator are studied using a heterodyne lase...
Techniques based on laser-induced surface acoustic waves have been developed with the potential for ...
Ultrafast laser-induced guided acoustic waves in thin, freely suspended films are important for many...
A heterodyne laser interferometer is used to study acoustic wave fields excited in a 1.8 GHz AlN thi...
A full-field view laser ultrasonic imaging method has been developed that measures acoustic motion a...
Film Bulk Acoustic Resonators are useful for many signal processing applications. Detailed knowledge...
A compact femtosecond dual-oscillator pump-probe setup with 48 MHz-repetition rate, relying on async...
A compact femtosecond dual-oscillator pump-probe setup with 48 MHz-repetition rate, relying on async...
A compact femtosecond dual-oscillator pump-probe setup with 48 MHz-repetition rate, relying on async...
We image gigahertz surface acoustic waves normally incident on a microscopic linear array of triangu...
Ultrafast laser pulses incident on metals can lead to the generation of coherent phonon wave packets...
The detection of ultrashort laser-generated acoustic pulses at a metal surface and the reconstructio...
Focusing of high-amplitude surface acoustic waves leading to material damage is visualized in an all...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
Acoustic wave fields in a thin-film bulk acoustic wave resonator are studied using a heterodyne lase...
Acoustic wave fields in a thin-film bulk acoustic wave resonator are studied using a heterodyne lase...
Techniques based on laser-induced surface acoustic waves have been developed with the potential for ...
Ultrafast laser-induced guided acoustic waves in thin, freely suspended films are important for many...
A heterodyne laser interferometer is used to study acoustic wave fields excited in a 1.8 GHz AlN thi...