Acoustic microscopy not only allows imaging of sample surfaces with high spatial resolution but also can be exploited to determine quantively surface properties. The scanning acoustic microscope (SAM) uses focused waves within a frequency range of 100 MHz-2GHz which yields a spatial resolution of a few µm limited by the wavelength of the imaging ultrasound. Quantitative determination of elastic surface properties can be done by evaluating measured material signatures of the acoustic microscope in reflection, so-called V(z) curves, and by calibrated measurements of the maximum amplitude of specular reflection. Both methods are based on theoretical calculations of ultrasonic reflection at sample surfaces in the acoustic microscope with specia...
An acoustic microscope with mechanical scanning and piezoelectric film transducers for the input and...
Elastic properties of nanoscopic materials, structures and thin films are important parameters contr...
Advanced Scanning Probe Microscopy techniques combine Atomic Force Microscopy (AFM) with ultrasound....
According to Abbe's limit, the lateral resolution of microscopes is restricted to approximately one ...
Acoustic microscopy enables you to image and measure the elastic properties of materials with the re...
Different acoustical near-field microscopes have been developed, some of which combine the high late...
During the last decade, Atomic Force Microscopy (AFM) has been widely used to image the topography o...
Acoustic microscopy enables one to image the interaction of acoustic waves with the elastic properti...
Scanning acoustic microscopy (SAM) has been applied to measure the near-surface elastic properties o...
Advanced Scanning Probe Microscopy techniques combine Atomic Force Microscopy (AFM) with ultrasound....
We constructed an atomic force acoustic microscope that enables one to detect out-of-plane and in-pl...
An acoustic microscope with mechanical scanning and piezoelectric film transducers for the input and...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
In Atomic Force Microscopy the deflection and torsion of micro-fabricated elastic beams with a senso...
The combination of ultrasound with atomic force microscopy (AFM) opens the high lateral resolution o...
An acoustic microscope with mechanical scanning and piezoelectric film transducers for the input and...
Elastic properties of nanoscopic materials, structures and thin films are important parameters contr...
Advanced Scanning Probe Microscopy techniques combine Atomic Force Microscopy (AFM) with ultrasound....
According to Abbe's limit, the lateral resolution of microscopes is restricted to approximately one ...
Acoustic microscopy enables you to image and measure the elastic properties of materials with the re...
Different acoustical near-field microscopes have been developed, some of which combine the high late...
During the last decade, Atomic Force Microscopy (AFM) has been widely used to image the topography o...
Acoustic microscopy enables one to image the interaction of acoustic waves with the elastic properti...
Scanning acoustic microscopy (SAM) has been applied to measure the near-surface elastic properties o...
Advanced Scanning Probe Microscopy techniques combine Atomic Force Microscopy (AFM) with ultrasound....
We constructed an atomic force acoustic microscope that enables one to detect out-of-plane and in-pl...
An acoustic microscope with mechanical scanning and piezoelectric film transducers for the input and...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
In Atomic Force Microscopy the deflection and torsion of micro-fabricated elastic beams with a senso...
The combination of ultrasound with atomic force microscopy (AFM) opens the high lateral resolution o...
An acoustic microscope with mechanical scanning and piezoelectric film transducers for the input and...
Elastic properties of nanoscopic materials, structures and thin films are important parameters contr...
Advanced Scanning Probe Microscopy techniques combine Atomic Force Microscopy (AFM) with ultrasound....