Magnetic ordering induced magnetodielectric effect in Ho 2 Cu 2 O 5 and Yb 2 Cu 2 O 5
Materials with strongly coupled magnetic and electronic degrees of freedom provide new possibilities for practical applications. In this paper, we have investigated the structure, magnetic property, and magnetodielectric (MD) effect in Ho 2 Cu 2 O 5 and Yb 2 Cu 2 O 5 polycrystalline samples, which p...
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Published in | Chinese physics B Vol. 32; no. 6; p. 67504 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
01.06.2023
|
Online Access | Get full text |
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Summary: | Materials with strongly coupled magnetic and electronic degrees of freedom provide new possibilities for practical applications. In this paper, we have investigated the structure, magnetic property, and magnetodielectric (MD) effect in Ho
2
Cu
2
O
5
and Yb
2
Cu
2
O
5
polycrystalline samples, which possess a non-centrosymmetric polar structure with space group
Pna
2
1
. In Ho
2
Cu
2
O
5
, Ho
3+
and Cu
2+
sublattices order simultaneously, exhibiting a typical paramagnetic to antiferromagnetic transition at 13.1 K. While for Yb
2
Cu
2
O
5
, two magnetic transitions which originate from the orderings of Yb
3+
(7.8 K) and Cu
2+
(13.5 K) sublattices are observed. A magnetic field induced metamagnetic transition is obtained in these two cuprates below Néel temperature (
T
N
). By means of dielectric measurement, distinct MD effect is demonstrated by the dielectric anomaly at
T
N
. Meanwhile, the MD effect is found to be directly related to the metamagnetic transition. Due to the specific spin configuration and different spin evolution in the magnetic field, a positive MD effect is formed in Ho
2
Cu
2
O
5
, and a negative one is observed in Yb
2
Cu
2
O
5
. The spontaneous dielectric anomaly at
T
N
is regarded as arising from the shifts in optical phonon frequencies, and the magnetoelectric coupling is used to interpret the magnetic field induced MD effect. Moreover, an
H
–
T
phase diagram is constructed for Ho
2
Cu
2
O
5
and Yb
2
Cu
2
O
5
based on the results of isothermal magnetic and dielectric hysteresis loops. |
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ISSN: | 1674-1056 |
DOI: | 10.1088/1674-1056/ac904a |