English

An open-source platform to study uniaxial stress effects on nanoscale devices

Mesoscale and Nanoscale Physics 2017-06-07 v1 Materials Science Instrumentation and Detectors

Abstract

We present an automatic measurement platform that enables the characterization of nanodevices by electrical transport and optical spectroscopy as a function of uniaxial stress. We provide insights into and detailed descriptions of the mechanical device, the substrate design and fabrication, and the instrument control software, which is provided under open-source license. The capability of the platform is demonstrated by characterizing the piezo-resistance of an InAs nanowire device using a combination of electrical transport and Raman spectroscopy. The advantages of this measurement platform are highlighted by comparison with state-of-the-art piezo-resistance measurements in InAs nanowires. We envision that the systematic application of this methodology will provide new insights into the physics of nanoscale devices and novel materials for electronics, and thus contribute to the assessment of the potential of strain as a technology booster for nanoscale electronics.

Keywords

Cite

@article{arxiv.1704.01394,
  title  = {An open-source platform to study uniaxial stress effects on nanoscale devices},
  author = {G. Signorello and M. Schraff and P. Zellekens and U. Drechsler and M. Buerge and H. R. Steinauer and R. Heller and M. Tschudy and H. Riel},
  journal= {arXiv preprint arXiv:1704.01394},
  year   = {2017}
}

Comments

6 figures, 19 pages; Submitted to Review of Scientific Instruments

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