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    Please use this identifier to cite or link to this item: http://ir.lib.ncu.edu.tw/handle/987654321/39101


    Title: Pressure effects on the transport and magnetic properties of La1.4Sr1.6Mn2O7
    Authors: Chang,CF;Chou,PH;Tsay,HL;Weng,SS;Chatterjee,S;Yang,HD;Liu,RS;Shen,CH;Li,WH
    Contributors: 物理研究所
    Keywords: METAL-INSULATOR-TRANSITION;GIANT MAGNETORESISTANCE;COLOSSAL MAGNETORESISTANCE;LA1-XSRXMNO3;FILMS;LA1.2SR1.8MN2O7;DEPENDENCE;MANGANITES;CRYSTALS;PRNIO3
    Date: 1998
    Issue Date: 2010-07-08 14:04:55 (UTC+8)
    Publisher: 中央大學
    Abstract: The effects of external (hydrostatic) pressure and internal (chemical) pressure on the transport and magnetic properties of the La1.4Sr1.6Mn2O7 are investigated. Both metal-insulator transition temperature T-m and Curie temperature T-C increase with the increase of external pressure. In contrast, the T-m and T-C decrease with the increase of Ca content in La-1.4(Sr1 - xCax)(1.6)Mn2O7 (x less than or equal to 0.3), where the internal pressure is supposed to be introduced. External pressure enlarge the ferromagnetic metal phase through the pressure-enhanced transfer interaction of the charge carriers. The Mn-O-Mn bond angle remains almost unchanged with the increase of Ca content which is in sharp contrast to the La1 - xSrxMnO3 system. The Mn-O(3) bond length is decreased by the external pressure while increased by the internal pressure. It is interpreted that the opposite behaviors of T-m and T-C for external and internal pressures are due to the different variations of Mn-O(3) bond length. All other results are discussed and compared with those in the (La,Sr)MNO3 system. [S0163-1829(98)06642-9].
    Relation: PHYSICAL REVIEW B
    Appears in Collections:[Graduate Institute of Physics] journal & Dissertation

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