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Pressure dependence of magnetic ordering temperatures of rare earth - Sn3 compounds

Producción científica: Articlerevisión exhaustiva

13 Citas (Scopus)

Resumen

Measurements of the hydrostatic pressure dependence of the Neél temperatures, TN, are reported for PrSn3, GdSn3, GdSn3 and CeIn3. TN is found to increase with applied pressure for PrSn3 and NdSn3, whereas TN is pressure independent within experimental error for GdSn3 and CeIn3. Slightly Sn-deficient RESn3 (RE=rare earth) compounds are found consistently to be weakly ferromagnetic. The physical properties of the RESn3 compounds exhibit analogies with the corresponding properties of dilute superconducting (LaRE)Sn3 alloys. The high pressure data for PrSn3 and CeIn3 are qualitatively consistent with a "Kondo necklace" model for magnetically ordered RE compounds with unstable 4f shells.

Idioma originalEnglish
Páginas (desde-hasta)833-838
Número de páginas6
PublicaciónSolid State Communications
Volumen32
N.º10
DOI
EstadoPublished - dic 1979

Nota bibliográfica

Funding Information:
Present address: Department of Physics and Astronomy, University of Kentucky, Lexington, KY 40506. Work supported by National Science Foundation Grant #DMR78-18066. (Visiting Scientist at the FBNML). Supported by the National Science Foundation.

Financiación

Present address: Department of Physics and Astronomy, University of Kentucky, Lexington, KY 40506. Work supported by National Science Foundation Grant #DMR78-18066. (Visiting Scientist at the FBNML). Supported by the National Science Foundation.

FinanciadoresNúmero del financiador
U.S. Department of Energy Chinese Academy of Sciences Guangzhou Municipal Science and Technology Project Oak Ridge National Laboratory Extreme Science and Engineering Discovery Environment National Science Foundation National Energy Research Scientific Computing Center National Natural Science Foundation of China78-18066
U.S. Department of Energy Chinese Academy of Sciences Guangzhou Municipal Science and Technology Project Oak Ridge National Laboratory Extreme Science and Engineering Discovery Environment National Science Foundation National Energy Research Scientific Computing Center National Natural Science Foundation of China

    ASJC Scopus subject areas

    • General Chemistry
    • Condensed Matter Physics
    • Materials Chemistry

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