4.6 Article

Excitons in molecular crystals from first-principles many-body perturbation theory: Picene versus pentacene

期刊

PHYSICAL REVIEW B
卷 86, 期 19, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.86.195307

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资金

  1. European Research Council [267374]
  2. Spanish Grants [FIS2011-65702-C02-01, PIB2010US-00652]
  3. ACI-Promociona [ACI2009-1036]
  4. Grupos Consolidados UPV/EHU del Gobierno Vasco [IT-319-07]
  5. Consolider nanoTHERM [CSD2010-00044]
  6. European Commission [280879-2 CRONOS CP-FP7]

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By solving the first-principles many-body Bethe-Salpeter equation, we compare the optical properties of two prototype and technological relevant organic molecular crystals: picene and pentacene. Albeit very similar for the structural and electronic properties, picene and pentacene show remarkable differences in their optical spectra. While for pentacene the absorption onset is due to a charge-transfer exciton, in picene it is related to a strongly localized Frenkel exciton. The detailed comparison between the two materials allows us to discuss, on general grounds, how the interplay between the electronic band dispersion and the exchange electron-hole interaction plays a fundamental role in setting the nature of the exciton. It represents a clear example of the relevance of the competition between localization and delocalization in the description of two-particle electronic correlation.

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