Giant and reversible extrinsic magnetocaloric effects in La0.7Ca0.3MnO3 films due to strain.
暂无分享,去创建一个
E Defay | X. Moya | N. Mathur | E. Defay | C. Ducati | O. Hovorka | A. Berger | M. Ghidini | F. Maccherozzi | L. C. Phillips | S. Dhesi | M. E. Vickers | L. Hueso | F Maccherozzi | S S Dhesi | A. Tovstolytkin | L E Hueso | C Ducati | M E Vickers | A Berger | O Hovorka | L C Phillips | X Moya | A I Tovstolytkin | D I Podyalovskii | M Ghidini | N D Mathur | D. I. Podyalovskii
[1] N. Trung,et al. Giant magnetocaloric effects by tailoring the phase transitions , 2010 .
[2] E. Brück,et al. On the determination of the magnetic entropy change in materials with first-order transitions , 2009 .
[3] M. Acet,et al. Magnetocaloric effect and its relation to shape-memory properties in ferromagnetic Heusler alloys , 2009, Journal of physics. Condensed matter : an Institute of Physics journal.
[4] N. Peppas. Theoretical Considerations , 2003 .
[5] E. Salje. A pre-martensitic elastic anomaly in nanomaterials: elasticity of surface and interface layers , 2008 .
[6] V. Etgens,et al. Strain engineering of the magnetocaloric effect in MnAs epilayers. , 2008, Physical review letters.
[7] J. Prieto,et al. Translating reproducible phase-separated texture in manganites into reproducible two-state low-field magnetoresistance: An imaging and transport study , 2008 .
[8] J. Prieto,et al. Giant sharp and persistent converse magnetoelectric effects in multiferroic epitaxial heterostructures. , 2007, Nature materials.
[9] X. Moya,et al. Magnetic superelasticity and inverse magnetocaloric effect in Ni-Mn-In , 2007, 0704.1243.
[10] N. Noginova,et al. Ferromagnetic resonance studies on colossal magnetoresistance films: Effects of homogeneity and light illumination , 2006 .
[11] Cambridge,et al. Negative magnetocaloric effect from highly sensitive metamagnetism in CoMnSi1- xGex , 2006, cond-mat/0603858.
[12] X. Moya,et al. Inverse magnetocaloric effect in ferromagnetic Ni–Mn–Sn alloys , 2005, Nature materials.
[13] B. Shen,et al. Relation between magnetic entropy and resistivity in La/sub 0.67/Ca/sub 0.33/MnO/sub 3/ , 2005, IEEE Transactions on Magnetics.
[14] A. Tishin,et al. The Magnetocaloric Effect and its Applications , 2003 .
[15] J. D. Brock,et al. Dynamically tuning properties of epitaxial colossal magnetoresistance thin films , 2003 .
[16] S. Fujieda,et al. Itinerant-electron Metamagnetic Transition and Large Magnetocaloric Effects in La(FexSi1-x)13 Compounds and Their Hydrides , 2003 .
[17] P. Littlewood,et al. Mesoscopic Texture in Manganites , 2003 .
[18] F. D. Boer,et al. Transition-metal-based magnetic refrigerants for room-temperature applications , 2002, Nature.
[19] H. Wada,et al. Giant magnetocaloric effect of MnAs1−xSbx , 2001 .
[20] F. Hu,et al. Large magnetic entropy change in a Heusler alloy Ni 52.6 Mn 23.1 Ga 24.3 single crystal , 2001 .
[21] C. Eom,et al. Strain modification of epitaxial perovskite oxide thin films using structural transitions of ferroelectric BaTiO3 substrate , 2000 .
[22] M. Greenblatt,et al. Local distortions in the colossal magnetoresistive manganates La0.70Ca0.30MnO3, La0.80Ca0.20MnO3 and La0.70Sr0.30MnO3 revealed by total neutron diffraction , 1999 .
[23] J. Mydosh,et al. Spatially Inhomogeneous Metal-Insulator Transition in Doped Manganites. , 1999, Science.
[24] J. Barandiaran,et al. Ferromagnetic resonance and spin wave resonance in multiphase materials: theoretical considerations , 1998 .
[25] Vitalij K. Pecharsky,et al. Tunable magnetic regenerator alloys with a giant magnetocaloric effect for magnetic refrigeration from ∼20 to ∼290 K , 1997 .
[26] K. Gschneidner,et al. Giant Magnetocaloric Effect in Gd{sub 5}(Si{sub 2}Ge{sub 2}) , 1997 .
[27] X. Bohigas,et al. Magnetocaloric effect in La0.67Ca0.33MnOδ and La0.60Y0.07Ca0.33MnOδ bulk materials , 1996 .
[28] D. Morelli,et al. Magnetocaloric properties of doped lanthanum manganite films , 1996 .
[29] O. Schirmer,et al. Paramagnetic defects in BaTiO3 and their role in light-induced charge transport. I. ESR studies , 1992 .
[30] H. F. Kay,et al. XCV. Symmetry changes in barium titanate at low temperatures and their relation to its ferroelectric properties , 1949 .
[31] C. Kittel. On the Theory of Ferromagnetic Resonance Absorption , 1948 .
[32] W. Giauque,et al. Attainment of Temperatures Below 1° Absolute by Demagnetization of Gd 2 (SO 4 ) 3 .8H 2 O , 1933 .