We present the submicron visualization of surface acoustic wave (SAW) fields within interdigital transducers (IDTs) obtained by a scanning acoustic force microscope. Utilizing the nonlinear force curve of the tip-to-surface interaction, a periodic deflection of the cantilever appears when the SAWs are excited intermittently. This deflection depends on the amplitude of the surface oscillation and was measured by lock-in technique. SAWs with operating frequencies above 600 MHz were detected. The influence of the mass loading on the local oscillation amplitude was studied for various layer thicknesses of the IDT electrodes. © 1997 American Institute of Physics
This paper reports about the first determination of the phase velocity of surface acoustic waves (SA...
With the increasing interest in nanostructures and thin films, the need for a quantitative measuring...
Surface acoustic waves (SAWs) are the guided waves that propagate along the top surface of a materia...
We present the submicron visualization of surface acoustic wave (SAW) fields within interdigital tra...
We report about a new technique for the investigation of SAW fields within SAW devices reaching subm...
The distributions of surface oscillation and surface charges were probed within an interdigital tran...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
We present a scanning acoustic force microscope (SAFM) for the study of surface acoustic wave (SAW) ...
The scanning acoustic tunneling microscope (SATM) which is based on a scanning tunneling microscope,...
We present the study of the influence of surface acoustic waves (SAWs) on point-contact friction in ...
A method is presented for the universal probing of surface acoustic waves (SAWs). For measuring high...
We present a detailed study of the influence of ultrasonic surface acoustic waves (SAWs) on point-co...
Many attempts have been made in acoustic microscopy to both achieve nanometer lateral resolution and...
We examine the scattering of surface acoustic waves (SAWs) by single dots, periodic and locally damp...
This paper reports about the first determination of the phase velocity of surface acoustic waves (SA...
With the increasing interest in nanostructures and thin films, the need for a quantitative measuring...
Surface acoustic waves (SAWs) are the guided waves that propagate along the top surface of a materia...
We present the submicron visualization of surface acoustic wave (SAW) fields within interdigital tra...
We report about a new technique for the investigation of SAW fields within SAW devices reaching subm...
The distributions of surface oscillation and surface charges were probed within an interdigital tran...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
We present a scanning acoustic force microscope (SAFM) for the study of surface acoustic wave (SAW) ...
The scanning acoustic tunneling microscope (SATM) which is based on a scanning tunneling microscope,...
We present the study of the influence of surface acoustic waves (SAWs) on point-contact friction in ...
A method is presented for the universal probing of surface acoustic waves (SAWs). For measuring high...
We present a detailed study of the influence of ultrasonic surface acoustic waves (SAWs) on point-co...
Many attempts have been made in acoustic microscopy to both achieve nanometer lateral resolution and...
We examine the scattering of surface acoustic waves (SAWs) by single dots, periodic and locally damp...
This paper reports about the first determination of the phase velocity of surface acoustic waves (SA...
With the increasing interest in nanostructures and thin films, the need for a quantitative measuring...
Surface acoustic waves (SAWs) are the guided waves that propagate along the top surface of a materia...