We have developed a novel technique of sample-tip distance regulation by using ultrasonic resonance method to sense the shear force in the nano-Newton range. A piezoelectric quartz fork is driven by its resonance frequency without an additional dither vibrator. By combining the vibration amplitude and phase shift of the fiber tip attached to the quartz fork, the sample-tip distance can be reliably controled at 0-50 nn. The shear force images show that the lateral resolution is better than 50 nm depending of the aperture size of the tip. Being a nonoptical detection mechanism, this method is very promising in the near field scanning optical microscopy, especially in the cases of reflective mode and spectroscopy, as well as being an independe...
Investigations have been performed on the dynamics of a distance regulation system based on an oscil...
A crucial part of the Scanning Near-Field Microscope (SNOM) is the distance regulation that keeps th...
In scanning near-field optical microscopy, the most popular probes are made of sharpened glass fiber...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
A simple, compact, and inexpensive method for shear force distance regulation is presented. A single...
We have developed a novel sample-tip regulation for a near-field optical microscope: an ultrasonic r...
[[abstract]]We propose and demonstrate a novel nonoptical technique for regulation of tip-sample dis...
An easy-to-implement non-optical shear-force detection setup for tip–sample distance regulation in s...
An easy-to-implement non-optical shear-force detection setup for tip–sample distance regulation in s...
Investigations have been performed on the dynamics of a distance regulation system based on an oscil...
Different acoustical near-field microscopes have been developed, some of which combine the high late...
International audienceThis Note reports on experimental results obtained with a recently published v...
Investigations have been performed on the dynamics of a distance regulation system based on an oscil...
A crucial part of the Scanning Near-Field Microscope (SNOM) is the distance regulation that keeps th...
In scanning near-field optical microscopy, the most popular probes are made of sharpened glass fiber...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
Scanning-near field optical microscopy requires a distance control mechanism. In most cases, it is b...
A simple, compact, and inexpensive method for shear force distance regulation is presented. A single...
We have developed a novel sample-tip regulation for a near-field optical microscope: an ultrasonic r...
[[abstract]]We propose and demonstrate a novel nonoptical technique for regulation of tip-sample dis...
An easy-to-implement non-optical shear-force detection setup for tip–sample distance regulation in s...
An easy-to-implement non-optical shear-force detection setup for tip–sample distance regulation in s...
Investigations have been performed on the dynamics of a distance regulation system based on an oscil...
Different acoustical near-field microscopes have been developed, some of which combine the high late...
International audienceThis Note reports on experimental results obtained with a recently published v...
Investigations have been performed on the dynamics of a distance regulation system based on an oscil...
A crucial part of the Scanning Near-Field Microscope (SNOM) is the distance regulation that keeps th...
In scanning near-field optical microscopy, the most popular probes are made of sharpened glass fiber...