We measured the phase velocity of surface acoustic waves (SAW's) with a scanning acoustic force microscope (SAFM) and achieved a maximum lateral resolution of 19.9 nm. The phase measurement of high-frequency waves with a slowly responding SAFM cantilever was perfomed by frequency mixing at its non-linear force curve. For Au layers of different thicknesses the SAW dispersion was studied on a lateral scale of 200 nm and compared to calculated data
The scanning acoustic tunneling microscope (SATM) which is based on a scanning tunneling microscope,...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
Elastic properties of nanoscopic materials, structures and thin films are important parameters contr...
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...
We present scanning acoustic force microscopy (SAFM) mixing experiments of differently polarized sur...
We present a scanning acoustic force microscope (SAFM) for the study of surface acoustic wave (SAW) ...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
We report about a new technique for the investigation of SAW fields within SAW devices reaching subm...
A method is presented for the universal probing of surface acoustic waves (SAWs). For measuring high...
In this paper we present a new method that allows the measurement of the phase velocity of in-plane ...
We present measurements of the reflection and mode conversion of surface acoustic waves (SAWs) by sc...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
Scanning Acoustic Force Microscopy (SAFM) has been used to study elementary surface acoustic wave ph...
We used multimode scanning acoustic force microscopy (SAFM) for studying noncollinearly propagating ...
The scanning acoustic tunneling microscope (SATM) which is based on a scanning tunneling microscope,...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
Elastic properties of nanoscopic materials, structures and thin films are important parameters contr...
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...
We present scanning acoustic force microscopy (SAFM) mixing experiments of differently polarized sur...
We present a scanning acoustic force microscope (SAFM) for the study of surface acoustic wave (SAW) ...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
We report about a new technique for the investigation of SAW fields within SAW devices reaching subm...
A method is presented for the universal probing of surface acoustic waves (SAWs). For measuring high...
In this paper we present a new method that allows the measurement of the phase velocity of in-plane ...
We present measurements of the reflection and mode conversion of surface acoustic waves (SAWs) by sc...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
Scanning Acoustic Force Microscopy (SAFM) has been used to study elementary surface acoustic wave ph...
We used multimode scanning acoustic force microscopy (SAFM) for studying noncollinearly propagating ...
The scanning acoustic tunneling microscope (SATM) which is based on a scanning tunneling microscope,...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
Elastic properties of nanoscopic materials, structures and thin films are important parameters contr...