We have developed a scanning tunneling microscope capable of detecting high frequency (1.8\u201312.5 MHz) acoustic waves. Acoustic pulses arriving at a conducting surface are detected as a high frequency perturbation of the tunneling current. Near and below the rolloff frequency of the current to voltage amplifier, the instantaneous displacement of the surface can be reconstructed. For higher frequencies, the nonlinear (rectifying) properties of the tunneling behavior allow the detection of the envelope (and hence the time of arrival and total amplitude) of the acoustic burst. The technique\u2019s sensitivity is comparable to that of optical detection schemes but offers much better lateral resolution.Peer reviewed: YesNRC publication: N
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Acoustic microscopy enables one to image the interaction of acoustic waves with the elastic properti...
Acoustic microscopy enables you to image and measure the elastic properties of materials with the re...
We present measurements of high frequency ultrasound generated by a femtosecond laser pulse. Focusse...
The scanning acoustic tunneling microscope (SATM) which is based on a scanning tunneling microscope,...
A method is presented for the universal probing of surface acoustic waves (SAWs). For measuring high...
Scanning tunneling microscopes are used to examine surfaces and surface properties with sub-nanomete...
This paper describes a new type of acoustic microscope based upon a scanning tunneling microscope (S...
Ultrasound sensors for non-destructive testing allow to obtain acoustical images from the depth of t...
We have constructed an atomic force microscope enabling one to image the topography of a sample, and...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
In this paper, we describe a new, highfrequency, time-resolved scanning acoustic microscope develope...
We present a high-resolution microscope capable of imaging buried structures through optically opaqu...
The determination of material properties for very small specimens such as biological cells or semico...
Guided wave ultrasound can be applied to inspect large volumes of structures from a single transduce...
Since acoustic microscopy was first invented by Quate and Lemons,1 many workers in the field have bu...
Acoustic microscopy enables one to image the interaction of acoustic waves with the elastic properti...
Acoustic microscopy enables you to image and measure the elastic properties of materials with the re...
We present measurements of high frequency ultrasound generated by a femtosecond laser pulse. Focusse...