We report on a new method of achieving and optimizing a high Q factor in a near-field scanning optical microscope (NSOM) by introducing two nodal wedges to a tuning-fork/fiber probe distance sensor and by selecting a vibrational mode of the dithering sensor. The effect of the nodal wedges on the dynamical properties of the sensor is theoretically analyzed and experimentally confirmed. The optimization achieved by the proposed method is understood from the vibration isolation and the subsequent formation of a local vibration cavity. The optimal condition is found to be less susceptible to the variation of the fiber tip length. This method allows effective NSOM measurement of samples placed even in aqueous solution. (c) 2010 American Institut...
A resonant shift and a decrease of resonance quality of a tuning fork attached to a conventional fib...
A crucial part of the Scanning Near-Field Microscope (SNOM) is the distance regulation that keeps th...
We have developed a novel technique of sample-tip distance regulation by using ultrasonic resonance ...
We report on a new method of achieving and optimizing a high Q factor in a near-field scanning optic...
We developed a new scheme for a higher sensitivity near-field scanning optical microscope (NSOM) by ...
We developed a new scheme for a higher sensitivity near-field scanning optical microscope (NSOM) by ...
[[abstract]]We propose and demonstrate a novel nonoptical technique for regulation of tip-sample dis...
In order to optimize the shear force control system used in height control of NSOM probe, the Qfacto...
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...
Near-field scanning optical microscopy (NSOM) is one of the most recent scanning probe techniques. I...
A resonant shift and a decrease of resonance quality of a tuning fork attached to a conventional fib...
In scanning near-field optical microscopy, the most popular probes are made of sharpened glass fiber...
A resonant shift and a decrease of resonance quality of a tuning fork attached to a conventional fib...
A crucial part of the Scanning Near-Field Microscope (SNOM) is the distance regulation that keeps th...
We have developed a novel technique of sample-tip distance regulation by using ultrasonic resonance ...
We report on a new method of achieving and optimizing a high Q factor in a near-field scanning optic...
We developed a new scheme for a higher sensitivity near-field scanning optical microscope (NSOM) by ...
We developed a new scheme for a higher sensitivity near-field scanning optical microscope (NSOM) by ...
[[abstract]]We propose and demonstrate a novel nonoptical technique for regulation of tip-sample dis...
In order to optimize the shear force control system used in height control of NSOM probe, the Qfacto...
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...
Near-field scanning optical microscopy (NSOM) is one of the most recent scanning probe techniques. I...
A resonant shift and a decrease of resonance quality of a tuning fork attached to a conventional fib...
In scanning near-field optical microscopy, the most popular probes are made of sharpened glass fiber...
A resonant shift and a decrease of resonance quality of a tuning fork attached to a conventional fib...
A crucial part of the Scanning Near-Field Microscope (SNOM) is the distance regulation that keeps th...
We have developed a novel technique of sample-tip distance regulation by using ultrasonic resonance ...