English

Nanomechanical spectroscopy of 2D materials

Mesoscale and Nanoscale Physics 2022-11-09 v2 Materials Science Applied Physics Optics

Abstract

We introduce a nanomechanical platform for fast and sensitive measurements of the spectrally-resolved optical dielectric function of 2D materials. At the heart of our approach is a suspended 2D material integrated into a nanomechanical resonator illuminated by a wavelength-tunable laser source. From the heating-related frequency shift of the resonator as well as its optical reflection measured as a function of photon energy, we obtain the real and imaginary parts of the dielectric function. Our measurements are unaffected by substrate-related screening and do not require any assumptions on the underling optical constants. This fast (τrise\tau_{rise} \sim 135 ns), sensitive (noise-equivalent power = 90 pWHz\frac{pW}{\sqrt{Hz}} ), and broadband (1.2 - 3.1 eV, extendable to UV-THz) method provides an attractive alternative to spectroscopic or ellipsometric characterisation techniques.

Keywords

Cite

@article{arxiv.2203.07025,
  title  = {Nanomechanical spectroscopy of 2D materials},
  author = {Jan N. Kirchhof and Yuefeng Yu and Gabriel Antheaume and Georgy Gordeev and Denis Yagodkin and Peter Elliott and Daniel B. de Araújo and Sangeeta Sharma and Stephanie Reich and Kirill I. Bolotin},
  journal= {arXiv preprint arXiv:2203.07025},
  year   = {2022}
}
R2 v1 2026-06-24T10:12:13.772Z