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Related papers: High-pressure cupric oxide: a room-temperature mul…

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Cupric oxide is a unique magnetic ferroelectric material with a transition temperature significantly higher than the boiling point of liquid nitrogen. However, the mechanism of high-T$_c$ multiferroicity in CuO remains puzzling. In this…

Materials Science · Physics 2015-06-03 Guangxi Jin , Kun Cao , Guang-Can Guo , Lixin He

Apart from being so far the only known binary multiferroic compound, CuO has a much higher transition temperature into the multiferroic state, 230 K, than any other known material in which the electric polarization is induced by spontaneous…

From the measurement of dielectric, ferroelectric, and magnetic properties we observe simultaneous ferroelectric and magnetic transitions around $\sim$600 K in orthorhombic LuFeO$_3$. We also observe suppression of the remanent polarization…

Strongly Correlated Electrons · Physics 2014-08-28 Ujjal Chowdhury , Sudipta Goswami , Dipten Bhattacharya , Jiten Ghosh , Soumen Basu , Samya Neogi

"Magnetic ferroelectric" has been found in a wide range of spiral magnets. However, these materials all suffer from low critical temperatures, which are usually below 40 K, due to strong spin frustration. Recently, CuO has been found to be…

Materials Science · Physics 2012-05-08 Guangxi Jin , Kun Cao , Guang-Can Guo , Lixin He

The high Curie temperature multiferroic compound, CuO, has a quasidegenerate magnetic ground state that makes it prone to manipulation by the so called ``order-by-disorder'' mechanism. First principle computations supplemented with Monte…

Magnetoelectric mutual control in multiferroics, which is the electric control of magnetization, or reciprocally the magnetic control of polarization has attracted much attention because of its possible applications to spintronic devices,…

Materials Science · Physics 2024-05-10 Shimon Tajima , Hidetoshi Masuda , Yoichi Nii , Shojiro Kimura , Yoshinori Onose

Multiferroic materials have attracted much interest due to the unusual coexistence of ferroelectric and (anti-)ferromagnetic ground states in a single compound. They offer an exciting platform for new physics and potentially novel devices.…

Strongly Correlated Electrons · Physics 2014-10-14 Je-Geun Park , Manh Duc Le , Jaehong Jeong , Sanghyun Lee

The crystal and magnetic structures of single-crystalline hexagonal LuFeO$_3$ films have been studied using x-ray, electron and neutron diffraction methods. The polar structure of these films are found to persist up to 1050 K; and the…

In spite of being highly relevant for the development of a new generation of information storage devices, not many single-phase materials displaying magnetic and ferroelectric orders above room temperature are known. Moreover, these…

Type-II multiferroic materials, in which ferroelectric polarization is induced by inversion non-symmetric magnetic order, promise new and highly efficient multifunctional applications based on the mutual control of magnetic and electric…

Multiferroic materials, which simultaneously exhibit ferroelectricity and magnetism, have attracted substantial attention due to their fascinating physical properties and potential technological applications. With the trends towards device…

The magnetic phase transitions reported below 230 K in cupric oxide are analyzed theoretically at the macroscopic and microscopic levels. The incommensurate multiferroic and lock-in commensurate phases are shown to realize an inverted…

Multiferroic materials, in which ferroelectric and magnetic ordering coexist, are of fundamental interest for the development of novel memory devices that allow for electrical writing and non-destructive magnetic readout operation. The…

Materials Science · Physics 2015-05-05 P. S. Wang , W. Ren , L. Bellaiche , H. J. Xiang

Multiferroics are promising for sensor and memory applications, but despite all efforts invested in their research no single-phase material displaying both ferroelectricity and large magnetization at room-temperature has hitherto been…

A new multiferroic material, CuBr2, is reported for the first time. CuBr2 has not only a high transition temperature (close to liquid nitrogen temperature) but also low dielectric loss and strong magnetoelectric coupling. These findings…

Strongly Correlated Electrons · Physics 2012-05-25 L. Zhao , T. L. Hung , C. C. Li , Y. Y. Chen , M. K. Wu , R. K. Kremer , M. G. Banks , A. Simon , M. H. Whangbo , C. Lee , J. S. Kim , I. Kim , K. H. Kim

Ferroelectricity-the switchable intrinsic electric polarization-has not yet been attained in a metal experimentally and is in fact generally deemed irreconcilable with free carriers, although polar metal has been achieved recently.…

Organic-inorganic multiferroics are promising for the next generation of electronic devices. To date, dozens of organic-inorganic multiferroics have been reported; however, most of them show magnetic Curie temperature much lower than room…

Materials Science · Physics 2022-08-02 Yali Yang , Junyi Ji , Junsheng Feng , Shiyou Chen , Laurent Bellaiche , Hongjun Xiang

Cupric oxide is multiferroic at unusual high temperatures. From density functional calculations we find that the low-T magnetic phase is paraelectric and the higher-T one ferroelectric, with a size and direction of polarization in good…

Strongly Correlated Electrons · Physics 2012-05-22 Gianluca Giovannetti , Sanjeev Kumar , Alessandro Stroppa , Jeroen van den Brink , Silvia Picozzi , Jose Lorenzana

The layered cuprate Bi$_{2}$CuO$_{4}$ is investigated using magnetic, dielectric and pyroelectric measurements. This system is observed to be an improper multiferroic, with a robust ferroelectric state being established near the magnetic…

Strongly Correlated Electrons · Physics 2017-03-06 Jitender Kumar , Soumendra Nath Panja , Amit Kumar Naiya , Sunil Nair

Recently, CuO has been proposed as a potential multiferroic material with high transition temperature. Competing models based on spin current and ionic displacements are invoked to explain ferroelectricity in CuO. The theoretical model…

Materials Science · Physics 2019-10-23 Binoy Krishna De , Vivek Dwij , V. G. Sathe
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