American Chemical Society, ACS Photonics, 5(2), p. 572-577, 2015
DOI: 10.1021/acsphotonics.5b00053
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We study one-, two-, three-, four-, and five-photon absorption of three centrosymmetric molecules using density functional theory. These calculations are the first ab initio calculations of five-photon absorption. Even- and odd-order absorption processes show different trends in the absorption cross sections. The behavior of all even- and odd-photon absorption properties shows a semiquantitative similarity, which can be explained using few-state models. This analysis shows that odd-photon absorption processes are largely determined by the one-photon absorption strength, whereas all even-photon absorption strengths are largely dominated by the two-photon absorption strength, in both cases modulated by powers of the polarizability of the final excited state. We demonstrate how to selectively enhance a specific multiphoton absorption process.Keywords: UV/vis spectroscopy; response theory; quantum chemistry; ab initio calculations; molecular modeling; nonlinear optical properties; structure−activity relations