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58
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33144454454
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note
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-1. Among these, only -85, -139, and six zeros can be determined to be dark states (-85, -139) or noninteracting (six zeros), but the other four eigenvalues, -44, -269, 93, 444 cannot be determined to be either allowed or forbidden transition due to the complicated eigenvectors in the analysis of the eigenvalues. However, according to the absorption spectrum, the interaction among the transition dipoles of x or y axis is estimated to be apparently small. As a result, regardless of the allowed or forbidden transition of interacting x and y axis', the dipole coupling energies in x and y axis' are small enough to be ignored, because the excitonic state formed by transition dipole coupling in x and y axis' cannot be observed in UV absorption spectrum or calculated by diagonalization of interacting matrices.
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