Comment on ‘Local structure, magnetization and Griffiths phase of self-doped La1−xMnO3+δ manganites’
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference23 articles.
1. Local structure, magnetization and Griffiths phase of self-doped La1−xMnO3+δ manganites
2. Nonanalytic Behavior Above the Critical Point in a Random Ising Ferromagnet
3. Magnetic signatures of ferromagnetic polarons inLa0.7Ca0.3MnO3: Colossal magnetoresistance is not a Griffiths singularity
4. Colossal Magnetoresistance is a Griffiths Singularity
5. First-order nature of the ferromagnetic phase transition in(La‐Ca)MnO3near optimal doping
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1. Critical behavior of polycrystalline Pr0.7Ca0.1Sr0.2MnO3 exhibiting the crossover of first and second order magnetic phase transitions;Journal of Materials Research and Technology;2020-11
2. Effect of A‐site ion nonstoichiometry on the chemical stability and electric conductivity of strontium and magnesium‐doped lanthanum gallate;Journal of the American Ceramic Society;2019-09-05
3. Mixed magnetic exchange interactions and ferromagnetic diffuse phase transition of La1−xMnO3+δ manganites;International Journal of Modern Physics B;2017-03-30
4. Robust random telegraph conductivity noise in single crystals of the ferromagnetic insulating manganite La0.86Ca0.14MnO3;Physical Review B;2017-03-01
5. Percolative nature of A-site disordered La0.75Ca0.25−xSrxMnO3 manganites;Materials Chemistry and Physics;2015-11
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