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Solve for the spectral properties of nanoparticles easily
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Bibliographic References
[1]

A Bettac, L Köller, V Rank, and K.H Meiwes-Broer. Scanning tunneling spectroscopy on deposited platinum clusters. Surf. Sci., 402–404(0):475–479, May 1998.

[2]

Craig F. Bohren and Donald R. Huffman. Absorption and Scattering of Light by Small Particles. John Wiley & Sons. Inc., first edition, 1983.

[3]

Selected colorimetric tables. Commission Internationale De L'Eclairage.

[4]

Fermi energies, fermi temperatures, and fermi velocities.

[5]

D. H. Dye, S. A. Campbell, G. W. Crabtree, J. B. Ketterson, N. B. Sandesara, and J. J. Vuillemin. Fermi surface and many-body enhancement in pd. Phys. Rev. B, 23(2):462, 1981.

[6]

Gustav Mie. Beitrage zur optik trüber medien, speziell kolloidaler metallösugen. Ann. Phys. (Leipzig), 25(3):377–445, 1908.

[7]

Seth M. Morton. Electrodynamic and Electronic Structure Methods to Model Surface Enhanced Spectroscopy and Molecule-Metal Nanoparticle Optical Coupling. PhD thesis, The Pennsylvania State University, 2012.

[8]

n-mie: Light scattering by n-layered spheres.

[9]

Edward D. Palik. Handbook of Optical Constants of Solids. Academic Press, Burlington, 1 edition, 1997.

[10]

Aleksandar D. Rakic, Aleksandra B. Djurisic, Jovan M. Elazar, and Marian L. Majewski. Optical properties of metallic films for vertical-cavity optoelectronic devices. Appl. Opt., 37(22):5271–5283, August 1998.

[11]

Darren L. Williams, Thomas J. Flaherty, Casie L. Jupe, Stephanie A. Coleman, Kara A. Marquez, and Jamie J. Stanton. Beyond lambdamax: Transforming visible spectra into 24-bit color values. J. Chem. Educ., 84(11):1873, 2007.