321 results on '"Ikeda, Naoshi"'
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102. Magnetic field induced phase transition in distorted perovskite Eu 0.6Sr 0.4MnO 3
103. Critical phenomena in helical magnet β-MnO 2: X-ray magnetic scattering study
104. Elemental substitution effects in multiferroic R Fe2O4 (R: rare earths)
105. Present status of the experimental aspect ofRFe2O4study
106. Valence-specific magnetization of the charge-ordered multiferroelectricLuFe2O4using soft x-ray magnetic circular dichroism under 30 T pulsed high magnetic fields
107. Current-Induced Enhancement of Magnetic Anisotropy in Spin-Charge-Coupled Multiferroic YbFe2O4
108. Valence instability of iron oxide ultrafine particles on ferroelectrics studied by Mössbauer spectroscopy
109. Magnetoelectric Effect Driven by Magnetic Domain Modification inLuFe2O4
110. Exchange Bias in MultiferroicRFe2O4(R=Y, Er, Tm, Yb, Lu, and In)
111. Ferroelectricity and Ferrimagnetism of Hexagonal YbFeO3 Thin Films
112. Terahertz spectroscopy of electronic ferroelectric LuFe2O4 crystal
113. Electronic phase transition of the valence-fluctuating fulleride Eu2.75C60
114. Electric Field Response of Stoichiometric LuFe2O4
115. Multiferroic Character and Magnetic Phase of LuFe2O4
116. nijigen sankaku koshi jiseitai aruefuitsuofo no kan'wa gensho
117. Magnetic and dielectric study of R0.5Sr0.5MnO3 (R=Gd, Tb and Dy)
118. Quantitative analysis of O2 gas sensing characteristics of picene thin film field-effect transistors
119. Charge Order Competition Leading to Nonlinearity in Organic Thyristor Family
120. High Pressure and Temperature Synthesis of Bi-based Perovskite (Bi0.5Na0.5-xLix)TiO3
121. Debt Structure and Capital Structure: Based on Bank Debt Renegotiation
122. Magneto-electric effect in charge-ordered LuFe2O4
123. The modulated structure and ferromagnetic insulating state in a nine-layer BaRuO3
124. Growth and Characterization of Bismuth Magnesium Titanate Bi(Mg1/2Ti1/2)O3
125. ChemInform Abstract: Magnetic and Dielectric Properties of YbFe2-xMnxO4(O ≤ x ≤ 1).
126. Structural Characterization and Dielectric Properties of Hexagonal Lu(Fe,Ti)O3
127. Magnetic and dielectric properties of YbFe2−xMnxO4 (0⩽x⩽1)
128. Magnetic and Dielectric Properties of R0.5Ca0.5MnO3(R = Eu-Lu)
129. High-performance C60 and picene thin film field-effect transistors with conducting polymer electrodes in bottom contact structure
130. Stoichiometric Study of the Dielectric and Magnetic Properties in Charge Frustrated System LuFe2O4
131. Current-Density Dependence of the Charge-Ordering Gap in the Organic Salt θ-(BEDT-TTF)2CsM(SCN)4 (M=Zn, Co, and Co0.7Zn0.3)
132. Local Structure Analysis of Cubic Perovskite CaCu3Ti4O12
133. Local Structure Modulation in the Electronic Ferroelectric Oxide LuFe2O4
134. Ferroelectricity from Ordering of Fe Valences in the Rare-Earth Iron Oxides RFe2O4 (R=Y, Ho-Lu)
135. Effects of Oxygen Annealing on Dielectric Properties of LuFeCuO4
136. Ferroelectric properties of triangular charge-frustrated LuFe2O4
137. Magnetic and Dielectric Properties of HoFe2O4and R1-xR'xFe2O4(R, R': Rare Earths)
138. Effect of Oxygen Vacancies on Charge Ordered Structure in YFe2O4-δ
139. Field-Induced Discommensuration in Charge Density Waves in o-TaS3
140. Magnetic and Dielectric Properties of InFe2O4, InFeCuO4, and InGaCuO4
141. Non-thermal Evidence for Current-Induced Melting of Charge Order in θ-(BEDT-TTF)2CsZn(SCN)4
142. Charge Ordered Structure and Dielectric Properties in LuFe2O4
143. Magnetic and Dielectric Properties of Tb0.5Ca0.5MnO3
144. Structural relations between two ground states ofNaV2O5under high pressure: A synchrotron x-ray diffraction study
145. Magnetic and dielectric properties ofRFe2O4,RFeMO4, andRGaCuO4(R=Yband Lu,M=Coand Cu)
146. Pattern Dictionary Development based on Non-Compositional Language Model for Japanese Compound and Complex Sentences
147. Structural Phase Transition in Two-Dimensional Crystallites of Organic Dye Molecules Formed on Aqueous Subphases
148. Ferroelectricity from Valence Ordering in RFe2O4
149. Magnetic and dielectric behavior of TmFe2O4 and TmFeCuO4
150. Magnetic and Dielectric Behavior of the Ruthenium Double Perovskite Oxides R2MRuO6 (R=La, Pr and Nd, M=Mg, Co, Ni and Zn)
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