Determining Young's modulus via the eigenmode spectrum of a nanomechanical string resonator

Author:

Klaß Yannick S.12ORCID,Doster Juliane2ORCID,Bückle Maximilian2,Braive Rémy34ORCID,Weig Eva M.1256ORCID

Affiliation:

1. Department of Electrical and Computer Engineering, Technical University of Munich, 85748 Garching, Germany

2. Department of Physics, University of Konstanz, 78457 Konstanz, Germany

3. Centre de Nanosciences et de Nanotechnologies, CNRS, Université Paris-Sud, Université Paris-Saclay, 91767 Palaiseau, France

4. Université de Paris, 75207 Paris Cedex 13, France

5. Munich Center for Quantum Science and Technology (MCQST), 80799 Munich, Germany

6. TUM Center for Quantum Engineering (ZQE), 85748 Garching, Germany

Abstract

We present a method for the in situ determination of Young's modulus of a nanomechanical string resonator subjected to tensile stress. It relies on measuring a large number of harmonic eigenmodes and allows us to access Young's modulus even for the case of a stress-dominated frequency response. We use the proposed framework to obtain Young's modulus of four different wafer materials, comprising three different material platforms amorphous silicon nitride, crystalline silicon carbide, and crystalline indium gallium phosphide. The resulting values are compared with theoretical and literature values where available, revealing the need to measure Young's modulus on the sample material under investigation for precise device characterization.

Funder

Deutsche Forschungsgemeinschaft

QuantERA

Horizon 2020 Framework Programme

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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