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Ab initio Study of Nonlinear Optical Susceptibilities in Silicon Nanowires

Mesoscale and Nanoscale Physics 2017-07-27 v1

Abstract

Using Time Independent Density Functional Theory (TIDFT) it is shown that the 2nd order optical susceptibilities of narrow (1nm-2nm) Silicon Nanowires (SiNW) are enhanced due to surface termination. The value of χ(2)\chi^{(2)} is enhanced up to 200 pm/V which is promising a strong Second Harmonic Generation (SHG) in SiNWs. For [100], [110] and [111] SiNWs, yxx component of χ(2)\chi^{(2)} tensor is 81, 225 and 81 pm/V, respectively. These are in close agreement with χ(2)\chi^{(2)} values reported for strained silicon waveguides in experiments. The 3rd order susceptibility, χ(3)\chi^{(3)}, is within the range of (0.1-12)x1018m2V210^{-18} \frac{m^{2}}{V^{2}} which is close to the experimental values of bulk silicon (0.1-0.2)x1018m2V210^{-18} \frac{m^{2}}{V^{2}} for [110] and [100] SiNWs and it is 100 times better for [111] SiNW. This study suggests possibilities of enhancing SHG in SiNWs through symmetry breaking via strain and surface termination/reconstruction as well as suitability of this DFT-based method in predicting nonlinear optical susceptibilities of nano structures.

Keywords

Cite

@article{arxiv.1707.08324,
  title  = {Ab initio Study of Nonlinear Optical Susceptibilities in Silicon Nanowires},
  author = {Daryoush Shiri},
  journal= {arXiv preprint arXiv:1707.08324},
  year   = {2017}
}

Comments

4 pages, 2 tables. 2 figures