Zitieren

[1] S.-W. Chang, V. P. Chuang, S. T. Boles, C. A. Ross, and C. V. Thompson, “Densely Packed Arrays of Ultra-High-Aspect-Ratio Silicon Nanowires Fabricated using Block-Copolymer Lithography and Metal-Assisted Etching”, Advanced Functional Materials, vol. 19, pp. 2495–2500, 2009.Search in Google Scholar

[2] M. L. Zhang, K. Q. Peng, X. Fan, J. S. Jie, R. Q. Zhang, S. T. Lee, and N. B. Wong, “Preparation of Large-Area Uniform Silicon Nanowires Arrays through Metal-Assisted Chemical Etching”, J. Phys. Chem. C, vol. 112, pp. 4444–4450, 2008.Search in Google Scholar

[3] X. Li, Y. Xiao, C. Yan, K. Zhou, S. L. Schweizer, A. Sprafke, J.-H. Lee, and R. B. Wehrspohn, “Influence of the mobility of Pt nanoparticles on the anisotropic etching properties of silicon”, ECS Solid State Lett., vol. 2, pp. 22–24, 2013.10.1149/2.010302sslSearch in Google Scholar

[4] H. Chen, H. Wang, X.-H. Zhang, C.-S. Lee, and S.-T. Lee, “Wafer-Scale Synthesis of Single-Crystal Zigzag Silicon Nano-wire Arrays with Controlled Turning Angles”, Nano letters, vol. 10, pp. 864–868, 2010.10.1021/nl903391x20104856Search in Google Scholar

[5] O. J. Hildreth, A. G. Fedorov, and C. P. Wong, “3D spirals with controlled chirality fabricated using metal-assisted chemical etching of silicon”, ACS Nano, vol. 6, pp. 10004–10012, 2012.Search in Google Scholar

[6] L. T., Canham, “Silicon Quantum Wire Array Fabrication by Electrochemical and Chemical Dissolution of Wafers”, Applied Physics Letters, vol. 57, pp. 1046–1048, 1990.Search in Google Scholar

[7] V. Lehmann, and U. Gösele, “Porous silicon formation: A quantum wire effect”, Applied Physics Letters, vol. 58, pp. 856–858, 1991.10.1063/1.104512Search in Google Scholar

[8] K. Imamura, T. Nonaka, D. Irishika and H. Kobayashi, Ecs Solid State Lett., vol. 4, pp. Q63–Q65, 2015.10.1149/2.0091512sslSearch in Google Scholar

[9] D. Irishika, K. Imamura and H. Kobayashi, Sol. Energ. Mat. Sol. Cells, vol. 141, 2015.10.1016/j.solmat.2015.05.006Search in Google Scholar

[10] K. Imamura, D. Irishika, and H. Kobayashi, Prog. Photovolt. Res. Appl., vol. 25, pp. 358–366, 2017.10.1002/pip.2867Search in Google Scholar

[11] K. Imamura, F. C. Franco Jr., T. Matsumoto, H. Kobayashi, Appl. Phys. Lett., vol. 103, pp. 013110, 2013.Search in Google Scholar

[12] B. B. Mandelbrot, The Fractal Geometry of Nature, Freeman: New York, USA, 1983.10.1119/1.13295Search in Google Scholar

[13] K. Falconer, Fractal Geometry, Wiley: Chichester, UK, 1989.Search in Google Scholar

[14] G. Franceschetti, D. Riccio, Scattering, Natural Surfaces and Fractals, Academic Press: Burlington, USA, 2007.10.1016/B978-012265655-2/50000-3Search in Google Scholar

[15] A. Chhabra, R. V. Jensen, Phys. Rew. A, vol. 40, pp. 5284–5294, 1989.Search in Google Scholar

[16] E. A. F. Ihlen, B. Vereijken, “Interaction dominant dynamics in human cognition: beyond 1/f fluctuations”, J. Exp. Psychol. Gen., vol. 139, pp. 436–463, 2010.10.1037/a001909820677894Search in Google Scholar

[17] American Standard ASME B46.1 for Surface Texture, 1995.Search in Google Scholar

[18] J. Schmahling, F. A. Hamprecht, “Generalizing the Abbott-Firestone curve by two new surface descriptors”, Wear, vol. 262, pp. 1360–1371, 2007.Search in Google Scholar

[19] W. Smith, Handbook of Real-Time Fast Fourier Transforms: Algorithms to Product Testing, Wiley, IEEE Press, 1995.10.1109/9780470544792Search in Google Scholar

[20] V. Jain, M. C. Biesinger, M. R. Linford, “The Gaussian-Lorentzian Sum, Product, and Convolution (Voigt) functions in the context of peak fitting X-ray photoelectron spectroscopy (XPS) narrow scans”, Applied Surface Science, vol. 447, pp. 548–553, 2018.10.1016/j.apsusc.2018.03.190Search in Google Scholar

[21] P. Pelikán, M. Čeppan, M. Liška, Applications of Numerical Methods in Molecular Spectroscopy, CRC Press, Boca Raton, 1993.Search in Google Scholar

[22] S. Jurečka, “Theoretical Model of the Physical System: Optimization by the Genetic Algorithm”, In: Ioannis Dritsas Stochastic Optimization - Seeing the Optimal for the Uncertain, InTech, Vienna, 2011.10.5772/14860Search in Google Scholar

[23] S. Jurečka, E. Pinčík, R., Brunner, “Solution of the optical parameters of the thin film systems and interfaces”, Applied Surface Science, vol. 254, pp. 3672–3676, 2008.Search in Google Scholar

[24] L. S. Lasdon, A. D. Waren, A. Jain, M. Ratner, “Design and Testing of a Generalized Reduced Gradient Code for Nonlinear Programming”, ACM Transactions on Mathematical Software, vol. 4, no. 1, pp. 34–50, 1978.10.1145/355769.355773Search in Google Scholar

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