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Levy PM. Giant magnetoresistance in magnetic layered and granular materials. Solid State Phys. 47:1994;367-462.
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Thousandfold change in resistivity in magnetoresistive La-Ca-Mn-O films
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Jin S, Tiefel TH, McCormack M, Fastnacht R, Ramesh R, Chen LH. Thousandfold change in resistivity in magnetoresistive La-Ca-Mn-O films. Science. 264:1994;413-415.
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Interaction between the d-shells in the transition metals II. Ferromagnetic compounds of manganese with perovskite structure
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Zener, C.1
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0006271229
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Shows how pressure or the radius of the A-site cation is a good parameter to separate the ferromagnetic metal and paramagnetic insulator regimes. The study shows the importance of the Mn-Mn transfer integral. of outstanding interest
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3. Phys Rev Lett. 75:1995;914-917. of outstanding interest.
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Phys Rev Lett
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Hwang, H.Y.1
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Fontcuberta J, Martinez B, Seffar A, Pinol S, Garcia-Munoz JL, Obrados X. Colossal magnetoresistance of ferromagnetic manganites: structural tuning and mechanisms. Phys Rev Lett. 76:1996;1122-1125.
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0042796599
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Large magnetovolume effect in yttrium doped La-Ca-Mn-O perovskite
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Ibarra MR, Algarabel PA, Marquina C, Blasco J, Garcia J. Large magnetovolume effect in yttrium doped La-Ca-Mn-O perovskite. Phys Rev Lett. 75:1995;3541-3544.
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Effect of Y substitution in La-Ca-Mn-O perovskites showing giant magnetoresistance
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Mahendiran R, Mahesh R, Raychaudhuri AK, Rao CNR. Effect of Y substitution in La-Ca-Mn-O perovskites showing giant magnetoresistance. Phys Rev B. 53:1996;12160-12165.
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0542406000
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3 (Ln=La, Nd, Gd, Y; A=Ca, Sr, Ba, Pb)
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c against the average radius of the A-site cation. of outstanding interest
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3 (Ln=La, Nd, Gd, Y; A=Ca, Sr, Ba, Pb). J Solid State Chem. 120:1995;204-207. of outstanding interest.
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J Solid State Chem
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Mahesh, R.1
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3 showing a large difference in temperature corresponding to the ferromagnetic transition and the insulator-metal transition
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3 showing a large difference in temperature corresponding to the ferromagnetic transition and the insulator-metal transition. Solid State Commun. 99:1996;149-152.
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Jin S, Tiefel TH, McCormack M, O'Bryan HM, Chan LH, Ramesh R, Schurig D. Thickness dependence of magnetoresistance in La-Ca-Mn-O epitaxial films. Appl Phys Lett. 67:1995;557-559.
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Giant magnetoresistance of manganese oxides with a layered perovskite structure
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This paper shows that there is a competition between antiferromagnetic and double exchange interactions, causing a sharp I→M transition and high GMR. of special interest
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This paper shows that there is a competition between antiferromagnetic and double exchange interactions, causing a sharp I→M transition and high GMR. Moritomo Y, Asamitsu A, Kuwahara H, Tokura Y. Giant magnetoresistance of manganese oxides with a layered perovskite structure. Nature. 380:1996;141-144. of special interest.
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Moritomo, Y.1
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3. Phys Rev Lett. 77:1996;1869-1872.
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3-δ. J Appl Phys. 79:1996;4549-4551.
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McGuire, T.R.1
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1/f resistance noise in the large magnetoresistance manganites
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Alers GB, Remirez AP, Jin S. 1/f resistance noise in the large magnetoresistance manganites. Appl Phys Lett. 68:1996;3644-3646.
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0000803175
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Enhancing the low field magnetoresistive resistance in perovskite manganites
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Suggests a possible means of optimizing GMR. of special interest
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Suggests a possible means of optimizing GMR. Hwang HY, Cheong SW, Batlogg B. Enhancing the low field magnetoresistive resistance in perovskite manganites. Appl Phys Lett. 68:1996;3494-3496. of special interest.
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Hwang, H.Y.1
Cheong, S.W.2
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Electron localization in mixed valence manganites
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An explanation for high resistivity at low temperatures is given. of special interest
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An explanation for high resistivity at low temperatures is given. Coey JMD, Viret M, Ranno L, Ounadjela K. Electron localization in mixed valence manganites. Phys Rev Lett. 75:1995;3910-3913. of special interest.
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0000940663
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3
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These papers show how the density of states in manganates is negligible at the Fermi level. of outstanding interest
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3. Phys Rev B. 53:1996;6873-6876. of outstanding interest.
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Phys Rev B
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Sarma, D.D.1
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3 studied by photoemission and X-ray absorption spectroscopy
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3 studied by photoemission and X-ray absorption spectroscopy. Phys Rev B. 51:1995;13942-13951.
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Electronic aspects of the ferromagnetic transition in manganese perovskites
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Park JH, Chen CT, Cheong SW, Bao W, Meigs G, Chakarian V, Idzerda YU. Electronic aspects of the ferromagnetic transition in manganese perovskites. Phys Rev Lett. 76:1996;2952-2955.
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0343224416
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3
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Shows the importance of electron-phonon interaction to explain the properties of the rare earth manganates. of outstanding interest
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3. Phys Rev Lett. 74:1995;5144-5147. of outstanding interest.
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Phys Rev Lett
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Millis, A.J.1
Littlewood, P.B.2
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Lattice effects in the colossal magnetoresistance manganites
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Roder H, Zang Jun, Bishop AR. Lattice effects in the colossal magnetoresistance manganites. Phys Rev Lett. 76:1996;1356-1359.
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0000855220
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Origins of colossal magnetoresistance in perovskite-type manganese oxides
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Briefly reviews the work on charge ordering in rare earth manganates. of outstanding interest
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Briefly reviews the work on charge ordering in rare earth manganates. Tokura Y, Tomioka Y, Kuwahara H, Asamitsu A, Moritomo Y, Kasai M. Origins of colossal magnetoresistance in perovskite-type manganese oxides. J Appl Phys. 79:1996;5288-5291. of outstanding interest.
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J Appl Phys
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Tokura, Y.1
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0041877781
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A first-order phase transition induced by a magnetic field
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Gives an account of the magnetic field induced first-order electronic transition with large hysteresis. of special interest
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Gives an account of the magnetic field induced first-order electronic transition with large hysteresis. Kuwahara H, Tomioka Y, Asamitsu A, Moritomo Y, Tokura Y. A first-order phase transition induced by a magnetic field. Science. 270:1995;961-963. of special interest.
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Science
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0000953833
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3 with controlled charge-ordering instability
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This paper describes magnetic field induced melting of the charge-ordered state into a metallic. of special interest
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3 with controlled charge-ordering instability. Phys Rev B. 53:1996;1689-1692. of special interest.
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Phys Rev B
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Tomioka, Y.1
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0030570051
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Striction-coupled magnetoresistance in perovskite-type manganateoxides
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Kuwahara H, Tomioka Y, Moritomo Y, Asamitsu A, Kasai M, Kumai R, Tokura Y. Striction-coupled magnetoresistance in perovskite-type manganateoxides. Science. 272:1996;80-82.
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0242664296
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The characteristics of charge-ordering are given. of special interest
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3. Phys Rev Lett. 76:1996;3188-3191. of special interest.
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Phys Rev Lett
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Ramirez, A.P.1
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A class of cobalt oxide magnetoresistance materials discovered with combinatorial synthesis
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Briceno G, Chang H, Sun X, Schultz PG, Xiang XD. A class of cobalt oxide magnetoresistance materials discovered with combinatorial synthesis. Science. 270:1995;273-275.
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