Theoretical study of NMR relaxation due to rattling phonons

Dahm T, Ueda K (2008)
In: SNS2007, Spectroscopies in Novel Superconductors '07. Journal of Physics and Chemistry of Solids, 69(12). Elsevier: 3160-3162.

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Konferenzbeitrag | Veröffentlicht | Englisch
Autor
;
Erscheinungsjahr
Titel des Konferenzbandes
SNS2007, Spectroscopies in Novel Superconductors '07
Band
69
Zeitschriftennummer
12
Seite
3160-3162
Konferenz
SNS2007, Spectroscopies in Novel Superconductors '07
Konferenzort
Sendai, Japan
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Dahm T, Ueda K. Theoretical study of NMR relaxation due to rattling phonons. In: SNS2007, Spectroscopies in Novel Superconductors '07. Journal of Physics and Chemistry of Solids. Vol 69. Elsevier; 2008: 3160-3162.
Dahm, T., & Ueda, K. (2008). Theoretical study of NMR relaxation due to rattling phonons. SNS2007, Spectroscopies in Novel Superconductors '07, Journal of Physics and Chemistry of Solids, 69, 3160-3162. Elsevier. doi:10.1016/j.jpcs.2008.06.048
Dahm, T., and Ueda, K. (2008). “Theoretical study of NMR relaxation due to rattling phonons” in SNS2007, Spectroscopies in Novel Superconductors '07 Journal of Physics and Chemistry of Solids, vol. 69, (Elsevier), 3160-3162.
Dahm, T., & Ueda, K., 2008. Theoretical study of NMR relaxation due to rattling phonons. In SNS2007, Spectroscopies in Novel Superconductors '07. Journal of Physics and Chemistry of Solids. no.69 Elsevier, pp. 3160-3162.
T. Dahm and K. Ueda, “Theoretical study of NMR relaxation due to rattling phonons”, SNS2007, Spectroscopies in Novel Superconductors '07, Journal of Physics and Chemistry of Solids, vol. 69, Elsevier, 2008, pp.3160-3162.
Dahm, T., Ueda, K.: Theoretical study of NMR relaxation due to rattling phonons. SNS2007, Spectroscopies in Novel Superconductors '07. Journal of Physics and Chemistry of Solids. 69, p. 3160-3162. Elsevier (2008).
Dahm, Thomas, and Ueda, Kazuo. “Theoretical study of NMR relaxation due to rattling phonons”. SNS2007, Spectroscopies in Novel Superconductors '07. Elsevier, 2008.Vol. 69. Journal of Physics and Chemistry of Solids. 3160-3162.