Authors: Beanland, R., Harrison, L., Khan, S., Brown, T., Roncal-Herrero, T., Peirson, H., Brown, A. P., Milne, S. J.
Source: Journal of Applied Physics; 8/14/2023, Vol. 134 Issue 6, p1-5, 5p
Subject Terms: TUNGSTEN bronze, FERROELECTRIC materials, CURIE temperature, DIFFRACTION patterns, FERROELECTRIC transitions, ELECTRON microscopy, BARIUM titanate
Authors: Lan, Mu, Wang, Rong, Song, Yu, Wei, Su-Huai
Source: Journal of Applied Physics; 7/28/2023, Vol. 134 Issue 4, p1-6, 6p
Subject Terms: SEMICONDUCTOR doping, MAGNETIC semiconductors, CURIE temperature, LATTICE constants, HIGH temperatures
Authors: Kumari, Puja, Mukherjee, Tania, Kar, Subhasmita, Ray, S. J.
Source: Journal of Applied Physics; May2023, Vol. 133 Issue 18, p1-9, 9p
Subject Terms: PHASE transitions, MAGNETIC anisotropy, CURIE temperature, SEMICONDUCTORS, ANTIFERROMAGNETIC materials, MONTE Carlo method
Authors: He, Yangkun, Coey, J. M. D., Gercsi, Zsolt
Source: Journal of Applied Physics; 4/14/2023, Vol. 133 Issue 14, p1-6, 6p
Subject Terms: CURIE temperature, LIGHT metals, HEAVY metals, FERRIMAGNETIC materials, METALS, SOLID solutions
Authors: Tsuna, Shunsuke, Gohda, Yoshihiro
Source: Journal of Applied Physics; 3/21/2023, Vol. 133 Issue 11, p1-6, 6p
Subject Terms: ACOUSTIC phonons, PHONONS, ATOMIC number, CURIE temperature, LIGHT elements
Authors: Mukherjee, T., Kumari, P., Kar, S., Datta, C., Ray, S. J.
Source: Journal of Applied Physics; 2/28/2023, Vol. 133 Issue 8, p1-9, 9p
Subject Terms: CURIE temperature, PHASE transitions, SPIN polarization, FERROMAGNETISM, ELECTRIC field effects, SUPERCONDUCTING magnets, MAGNETS
Authors: Sun, He, Jiang, Liwei, Zheng, Yisong
Source: Journal of Chemical Physics; 2/14/2023, Vol. 158 Issue 6, p1-8, 8p
Subject Terms: MAGNETISM, MAGNETIC properties, MAGNETIC moments, CURIE temperature, SLABS
Authors: Ha, Minh-Quyet, Nguyen, Duong-Nguyen, Nguyen, Viet-Cuong, Kino, Hiori, Ando, Yasunobu, Miyake, Takashi, Denœux, Thierry, Huynh, Van-Nam, Dam, Hieu-Chi
Source: Journal of Applied Physics; 2/7/2023, Vol. 133 Issue 5, p1-13, 13p
Subject Terms: CHROMIUM-cobalt-nickel-molybdenum alloys, DATA mining, CURIE temperature, DEMPSTER-Shafer theory, MAGNETIZATION
Authors: Dixit, Srishti, Ghosh, Labanya, Alam, Mohd, Kumar, Satya Vijay, Patel, Neha, Ghosh, Swayangsiddha, Shahi, Nisha, Singh, Sanjay, Chatterjee, Sandip
Source: Journal of Applied Physics; 1/7/2023, Vol. 133 Issue 1, p1-9, 9p
Subject Terms: MEMORY bias, ISING model, CURIE temperature, MAGNETIC relaxation, SPIN polarization, HEUSLER alloys
Authors: Guan, Shangyi, Wu, Xiaojun, Shi, Wei, Wu, Yutong, Xu, Hongfei, Lang, Rong, Chen, Yu, Tan, Zhi, Xing, Jie, Zhu, Jianguo, Chen, Qiang
Source: Journal of Applied Physics; 1/7/2023, Vol. 133 Issue 1, p1-8, 8p
Subject Terms: SOLID solutions, FERROELECTRIC crystals, ELECTRICAL resistivity, CURIE temperature, PIEZOELECTRICITY, PIEZOELECTRIC ceramics, RELAXOR ferroelectrics
Authors: Chen, F. Z., Ruhland, K., Umland, C., Bertrand, S. M., Vogt, A. J., Kelton, K. F., Mauro, N. A.
Source: Journal of Chemical Physics; 11/21/2022, Vol. 157 Issue 19, p1-12, 12p
Subject Terms: MOLECULAR force constants, MOLECULAR dynamics, METALLIC glasses, X-ray scattering, LIQUIDS, CURIE temperature
Authors: Reichel, Maximilian, Xu, Bai-Xiang, Schröder, Jörg
Source: Journal of Applied Physics; 11/14/2022, Vol. 132 Issue 18, p1-21, 21p
Subject Terms: CURIE temperature, MAGNETIC materials, FINITE element method, SPHERICAL coordinates, LAGRANGE multiplier
Authors: Liu, Donglin, Gao, Shihan, Zheng, Taotao, Xu, Chudong
Source: Journal of Applied Physics; 11/7/2022, Vol. 132 Issue 17, p1-9, 9p
Subject Terms: MAGNETIZATION, CURIE temperature, THERMAL electrons, COMPUTER storage devices, MARKOV spectrum
Authors: Sushma, Jindal, Shilpi
Source: AIP Conference Proceedings; 2023, Vol. 2735 Issue 1, p1-6, 6p
Subject Terms: BARIUM strontium titanate, GAS detectors, CURIE temperature, PERMITTIVITY, DIELECTRIC properties, FERROELECTRIC ceramics, FERROELECTRIC polymers, FERROELECTRIC thin films
Authors: Pan, C. B., Zhao, G. C., Li, S. M., Wang, X. L., Wang, J. M. Z., Tao, M., Yin, L. H., Song, W. H., Zhu, X. B., Yang, J., Sun, Y. P.
Source: Journal of Applied Physics; 9/21/2022, Vol. 132 Issue 11, p1-11, 11p
Subject Terms: PIEZOELECTRIC ceramics, CERAMICS, PIEZOELECTRICITY, CURIE temperature, FERROELECTRICITY, LOW temperatures
Source: Journal of Applied Physics; 9/14/2022, Vol. 132 Issue 10, p1-8, 8p
Subject Terms: MAGNETISM, EPITAXY, HETEROSTRUCTURES, THIN films, CURIE temperature, MAGNETOCALORIC effects, PARTIAL pressure
Authors: Gao, Mengqi, Xie, Lei, Li, Qiang, Huo, Juntao, Chang, Chuntao
Source: Journal of Applied Physics; 8/7/2022, Vol. 132 Issue 5, p1-5, 5p
Subject Terms: AMORPHOUS alloys, MAGNETIC cooling, MAGNETICS, IRON alloys, MAGNETOCALORIC effects, MAGNETIC entropy, CURIE temperature
Authors: Xue, Yufei, Shen, Zhong, Wu, Zebin, Song, Changsheng
Source: Journal of Applied Physics; 8/7/2022, Vol. 132 Issue 5, p1-8, 8p
Subject Terms: MONTE Carlo method, MONOMOLECULAR films, CURIE temperature, FERROMAGNETIC materials, FORECASTING
Source: Optical & Quantum Electronics; Oct2023, Vol. 55 Issue 10, p1-21, 21p
Subject Terms: MAGNETIC properties, MAGNETIC semiconductors, CURIE temperature, MONOMOLECULAR films, MAGNETIC moments, IRON clusters, IRON-based superconductors
Authors: Tian, Ye, Li, Lei, Geng, Jia, Shi, Hongbin, Xu, Yonghao, Shi, Wenjing, Guo, Xu, She, Liaona, Jin, Li, Ge, Wanyin, Wei, Xiaoyong
Source: Journal of the American Ceramic Society; Oct2023, Vol. 106 Issue 10, p5907-5921, 15p, 1 Black and White Photograph, 10 Graphs
Subject Terms: REVERSIBLE phase transitions, CURIE temperature, SPACE groups, PEROVSKITE, COMMERCIAL space ventures, CERAMICS