INTRODUCTION

PRODUCT BENEFITS

DECISION GUIDE

NANOPOSITIONER

LINEAR POSITIONERS

ROTATORS

GONIOMETERS

SCANNERS

WORKING PRINCIPLE

WORKING ENVIRONMENTS

COMBINING POSITIONERS

APPLICATION NOTES

MOVIES

PUBLICATIONS

 

 


APPLICATION NOTES

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7.
Ballistic electron emission microscopy (BEEM) studies using ANP100 nanopositioners A new application using an ANPxyz100 stack within a Ballistic electron emission microscopy (BEEM) is reported. Both, STM and BEEM data are presented demonstrating the good performance of this nanopositioning unit.

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6. Performance Test of the ANPz30/LT at 35 mK and 15 Tesla The attocube nanopositioner ANPz30/LT has been tested extensively at very low temperatures and high magnetic fields showing that operating the device at various magnetic fields does not affect the base temperature of the setup.

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5.
Atomic Resolution Imaging in STM using
attocube Positioners
JEOL, Japan is currently building a STM operating at low temperatures and high vacuum conditions. The scan head has
been fabricated using attocube system’s ANPz100 for the tip approach. This ultra-stable linear positioner provides atomic resolution over a travel range of 6 mm.

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4. Ultra-compact xyz Fiberoptics Positioning System The precise alignment of optical elements in a Micro-Opto-Electro-
Mechanical System (MOEMS) is of uttermost relevance in order to realize
reliable set-ups.

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3.
Vibrations of the ANPxyz100 Positioning Unit Measured with an Interferometric Setup The main vibrations observed around 600 Hz were determined to be always smaller than 20 pm. In the DC regime (if the noise is integrated over the entire spectrum), the noise is always smaller than 33 pm!

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2. Vibrations of the ANPxyz50 Positioning Unit Measured Using the attoCFM II (1” Version) Vibration amplitudes of less than 100 pm were observed, main. The total vibration (integral of all harmonics) was determined to be about 800 pm.

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1.
attocube systems positioners for PL measurements in high magnetic felds The attocube systems positioners ANPxyz100/LT have been used in a setup for optical measurements in LHe temperature and magnetic fields up to 28 T at the Grenoble High Magnetic Field Laboratory.

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