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1.
Light Sci Appl ; 5(4): e16062, 2016 Apr.
Article in English | MEDLINE | ID: mdl-30167158

ABSTRACT

We report on the unconventional optical properties exhibited by a two-dimensional array of thin Si nanowires arranged in a random fractal geometry and fabricated using an inexpensive, fast and maskless process compatible with Si technology. The structure allows for a high light-trapping efficiency across the entire visible range, attaining total reflectance values as low as 0.1% when the wavelength in the medium matches the length scale of maximum heterogeneity in the system. We show that the random fractal structure of our nanowire array is responsible for a strong in-plane multiple scattering, which is related to the material refractive index fluctuations and leads to a greatly enhanced Raman scattering and a bright photoluminescence. These strong emissions are correlated on all length scales according to the refractive index fluctuations. The relevance and the perspectives of the reported results are discussed as promising for Si-based photovoltaic and photonic applications.

2.
Opt Express ; 15(11): 6946, 2007 May 28.
Article in English | MEDLINE | ID: mdl-19547009

ABSTRACT

An erratum is presented to correct the errors in two equations in Sect. 3 of [Opt. Express 14, 9508--9521 (2006)].

3.
Opt Express ; 15(11): 7005, 2007 May 28.
Article in English | MEDLINE | ID: mdl-19547017

ABSTRACT

An erratum is presented to correct the errors in two equations in Sect. 3 of [Opt. Express 14, 9508--9521 (2006)].

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