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The imaginary index is sometimes termed the ‘‘extinction coefficient’’, but context is needed since sometimes ‘‘extinction coefficient’’ refers to an absorption-per-mole term. Dielectric materials often have low absorption and the imaginary index and are often negligible. Metals have high absorption, and the imaginary index is high. However, optical absorption and the imaginary index are wavelength dependent. Materials absorb optical energy if energy and momentum are conserved by the absorption process.

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D. Cocker, H. Ra, D. Lee, O. Solgaard, and M. J. Schnitzer, ‘‘Fastscanning two-photon fluorescence imaging based on a microelectromechanical 18 [27] [28] [29] [30] [31] [32] [33] [34] [35] [36] [37] [38] [39] [40] Optical MEMS for chemical analysis and biomedicine systems two-dimensional scanning mirror,’’ Optics Letters, vol. 31, no. 13, pp. 2018–2020, 2006. H. Ra, W. Piyawattanametha, M. J. Mandella, J. T. C. Liu, L. K. Wong, T. D. Wang, C. H. Contag, G. S. Kino, and O. Solgaard, ‘‘Three-dimensional in vivo imaging by a handheld dual-axes confocal microscope,’’ Optics Express, vol.

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