We present experimental results that extend the frequency range of ultrasonic force microscopy (UFM) to 100 MHz, operating in a mode in which the cantilever base is vibrated. In this "waveguide-UFM" mode flexural ultrasonic vibrations are launched down the cantilever as in a waveguide, without exciting any particular cantilever resonance. The nonlinearity of the tip-sample force-distance curve allows the conversion of a modulated ultrasonic frequency into a low frequency vibration of the cantilever, detected using an optical lever at the modulation frequency in an conventional atomic force microscope. Experiments were performed on a sample of InAs self-assembled quantum dots on a GaAs substrate. The dots, of order 10-100 nm in diameter, wer...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
Imaging of nanoscale structures buried in a covering material is an extremely challenging task, but ...
Imaging of nanoscale structures buried in a covering material is an extremely challenging task, but ...
We present experimental results that extend the frequency range of ultrasonic force microscopy (UFM)...
We present measurements using ultrasonic force microscopy at similar to 60 MHz, operating in a "wave...
Use of high frequency (HF) vibrations at MHz frequencies in Atomic Force Microscopy (AFM) advanced n...
Ultrasonic vibration can be nonlinearly detected by means of an atomic force microscopy cantilever w...
The increasing production of nano-devices and nano-composite materials has prompted the development ...
The increasing production of nano-devices and nano-composite materials has prompted the development ...
Cantilevers of atomic force microscopes usually have spring constants of less than 1N/m and fundamen...
We present a novel method for nanometer resolution subsurface imaging. When a sample of atomic force...
Dynamic Atomic Force Microscopy (AFM) modes, where the cantilever is vibrated while the sample surfa...
3 pages, 4 figures.The authors present a method based on dynamic force microscopy to characterize su...
We constructed an atomic force acoustic microscope that enables one to detect out-of-plane and in-pl...
According to Abbe's limit, the lateral resolution of microscopes is restricted to approximately one ...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
Imaging of nanoscale structures buried in a covering material is an extremely challenging task, but ...
Imaging of nanoscale structures buried in a covering material is an extremely challenging task, but ...
We present experimental results that extend the frequency range of ultrasonic force microscopy (UFM)...
We present measurements using ultrasonic force microscopy at similar to 60 MHz, operating in a "wave...
Use of high frequency (HF) vibrations at MHz frequencies in Atomic Force Microscopy (AFM) advanced n...
Ultrasonic vibration can be nonlinearly detected by means of an atomic force microscopy cantilever w...
The increasing production of nano-devices and nano-composite materials has prompted the development ...
The increasing production of nano-devices and nano-composite materials has prompted the development ...
Cantilevers of atomic force microscopes usually have spring constants of less than 1N/m and fundamen...
We present a novel method for nanometer resolution subsurface imaging. When a sample of atomic force...
Dynamic Atomic Force Microscopy (AFM) modes, where the cantilever is vibrated while the sample surfa...
3 pages, 4 figures.The authors present a method based on dynamic force microscopy to characterize su...
We constructed an atomic force acoustic microscope that enables one to detect out-of-plane and in-pl...
According to Abbe's limit, the lateral resolution of microscopes is restricted to approximately one ...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
Imaging of nanoscale structures buried in a covering material is an extremely challenging task, but ...
Imaging of nanoscale structures buried in a covering material is an extremely challenging task, but ...