Tilted black-Si: ~0.45 form-birefringence from sub-wavelength needles
Abstract
The self-organised conical needles produced by plasma etching of silicon (Si), known as black silicon (b-Si), create a form-birefringent surface texture when etching of Si orientated at angles of (angle between the Si surface and vertical plasma E-field). The height of the needles in the form-birefringent region following 15~min etching was nm and had a 100 m width of the optical retardance/birefringence, characterised using polariscopy. The height of the b-Si needles corresponds closely to the skin-depth of Si for the visible spectral range. Reflection-type polariscope with a voltage-controlled liquid-crystal retarder is proposed to directly measure the retardance of the region with tilted b-Si needles. The quantified form birefringence of over ~nm spectral window was obtained. Such high values of at visible wavelengths can only be observed in the most birefringence calcite or barium borate as well as in liquid crystals. The replication of b-Si into Ni-shim with high fidelity was also demonstrated and can be used for imprinting of the b-Si nanopattern into other materials.
Keywords
Cite
@article{arxiv.2004.00120,
title = {Tilted black-Si: ~0.45 form-birefringence from sub-wavelength needles},
author = {Darius Gailevicius and Meguya Ryu and Reo Honda and Stefan Lundgaard and Tai Suzuki and Jovan Maksimovic and Jingwen Hu and Denver P. Linklater and Elena P. Ivanova and Tomas Katkus and Vijayakumar Anand and Mangirdas Malinauskas and Yoshiaki Nishijima and Mangirdas Malinauskas and Vijayakumar Anand and Soon Hock Ng and Kestutis Staliunas and Junko Morikawa and Saulius Juodkazis},
journal= {arXiv preprint arXiv:2004.00120},
year = {2020}
}
Comments
14 pages, 13 figures