Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene

Jensen SA, Mics Z, Ivanov I, Varol HS, Turchinovich D, Koppens FHL, Bonn M, Tielrooij KJ (2014)
Nano Letters 14(10): 5839-5845.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Jensen, S. A.; Mics, Z.; Ivanov, I.; Varol, H. S.; Turchinovich, DmitryUniBi; Koppens, F. H. L.; Bonn, M.; Tielrooij, K. J.
Erscheinungsjahr
2014
Zeitschriftentitel
Nano Letters
Band
14
Ausgabe
10
Seite(n)
5839-5845
ISSN
1530-6984
eISSN
1530-6992
Page URI
https://pub.uni-bielefeld.de/record/2983618

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Jensen SA, Mics Z, Ivanov I, et al. Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene. Nano Letters. 2014;14(10):5839-5845.
Jensen, S. A., Mics, Z., Ivanov, I., Varol, H. S., Turchinovich, D., Koppens, F. H. L., Bonn, M., et al. (2014). Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene. Nano Letters, 14(10), 5839-5845. https://doi.org/10.1021/nl502740g
Jensen, S. A., Mics, Z., Ivanov, I., Varol, H. S., Turchinovich, Dmitry, Koppens, F. H. L., Bonn, M., and Tielrooij, K. J. 2014. “Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene”. Nano Letters 14 (10): 5839-5845.
Jensen, S. A., Mics, Z., Ivanov, I., Varol, H. S., Turchinovich, D., Koppens, F. H. L., Bonn, M., and Tielrooij, K. J. (2014). Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene. Nano Letters 14, 5839-5845.
Jensen, S.A., et al., 2014. Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene. Nano Letters, 14(10), p 5839-5845.
S.A. Jensen, et al., “Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene”, Nano Letters, vol. 14, 2014, pp. 5839-5845.
Jensen, S.A., Mics, Z., Ivanov, I., Varol, H.S., Turchinovich, D., Koppens, F.H.L., Bonn, M., Tielrooij, K.J.: Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene. Nano Letters. 14, 5839-5845 (2014).
Jensen, S. A., Mics, Z., Ivanov, I., Varol, H. S., Turchinovich, Dmitry, Koppens, F. H. L., Bonn, M., and Tielrooij, K. J. “Competing Ultrafast Energy Relaxation Pathways in Photoexcited Graphene”. Nano Letters 14.10 (2014): 5839-5845.
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