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Quantum interference between the third and fourth exciton states in semiconducting carbon nanotubes using resonance Raman spectroscopy

  • Juan G. Duque
  • , Hagen Telg
  • , Hang Chen
  • , Anna K. Swan
  • , Andrew P. Shreve
  • , Xiaomin Tu
  • , Ming Zheng
  • , Stephen K Doorn

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

We exploit an energy level crossover effect [Haroz et al., Phys. Rev. BPRBMDO1098-0121 77, 125405 (2008)10.1103/PhysRevB.77.125405] to probe quantum interference in the resonance Raman response from carbon nanotube samples highly enriched in the single semiconducting chiralities of (8,6), (9,4), and (10,5). UV Raman excitation profiles of G-band spectra reveal unambiguous signatures of interference between the third and fourth excitonic states (E 33 and E 44). Both constructive and destructive responses are observed and lead to anomalous intensity ratios in the LO and TO modes. Especially large anomalies for the (10,5) structure result from nearly identical energies found for the two E ii transitions. The interference patterns demonstrate that the sign of the exciton-phonon coupling matrix elements changes for the LO mode between the two electronic states, and remains the same for the TO mode. Significant non-Condon contributions to the Raman response are also found.

Original languageEnglish
Article number117404
JournalPhysical Review Letters
Volume108
Issue number11
DOIs
StatePublished - Mar 16 2012

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