Softening the ultra-stiff: controlled variation of Young's modulus in single crystal diamond
arXiv:1608.07087 · doi:10.1016/j.actamat.2016.06.019
Abstract
A combined experimental and numerical study on the variation of the elastic properties of defective single-crystal diamond is presented for the first time, by comparing nano-indentation measurements on MeV-ion-implanted samples with multi-scale modeling consisting of both ab initio atomistic calculations and meso-scale Finite Element Method (FEM) simulations. It is found that by locally introducing defects in the 2x10^18 - 5x10^21 cm-3 density range, a significant reduction of, as well as of density, can be induced in the diamond crystal structure without incurring in the graphitization of the material. Ab initio atomistic simulations confirm the experimental findings with a good degree of confidence. FEM simulations are further employed to verify the consistency of measured deformations with a stiffness reduction, and to derive strain and stress levels in the implanted region. Combining these experimental and numerical results, we also provide insight into the mechanism responsible for the depth dependence of the graphitization threshold in diamond. This work prospects the possibility of achieving accurate tunability of the mechanical properties of single-crystal diamond through defect engineering, with significant technological applications, i.e. the fabrication and control of the resonant frequency of diamond-based micromechanical resonators.
32 pages, 7 figures
References in corpus (7)
- Dynamic strain-mediated coupling of a single diamond spin to a mechanical resonator
- Strongly enhanced photon collection from diamond defect centres under micro-fabricated integrated solid immersion lenses
- Fabrication of Ultrathin Single-Crystal Diamond Membranes
- Characterization of Three-Dimensional Microstructures in Single Crystal Diamond
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Cited by in corpus (4)
- Polarized micro-Raman studies of femtosecond laser written stress-induced optical waveguides in diamond
- Creation, Control, and Modeling of NV Centers in Nanodiamonds
- Micro and nano-patterning of single-crystal diamond by swift heavy ion irradiation
- Effect of Crystallographic Orientation on the Potential Barrier and Conductivity of Bessel Written Graphitic Electrodes in Diamond