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Signatures of a magnetic superstructure phase induced by ultrahigh magnetic fields in a breathing pyrochlore antiferromagnet.


ABSTRACT: The mutual coupling of spin and lattice degrees of freedom is ubiquitous in magnetic materials and potentially creates exotic magnetic states in response to the external magnetic field. Particularly, geometrically frustrated magnets serve as a fertile playground for realizing magnetic superstructure phases. Here, we observe an unconventional two-step magnetostructural transition prior to a half-magnetization plateau in a breathing pyrochlore chromium spinel by means of state-of-the-art magnetization and magnetostriction measurements in ultrahigh magnetic fields available up to 600 T. Considering a microscopic magnetoelastic theory, the intermediate-field phase can be assigned to a magnetic superstructure with a three-dimensional periodic array of 3-up-1-down and canted 2-up-2-down spin molecules. We attribute the emergence of the magnetic superstructure to a unique combination of the strong spin-lattice coupling and large breathing anisotropy.

SUBMITTER: Gen M 

PROVIDER: S-EPMC10438373 | biostudies-literature | 2023 Aug

REPOSITORIES: biostudies-literature

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Signatures of a magnetic superstructure phase induced by ultrahigh magnetic fields in a breathing pyrochlore antiferromagnet.

Gen Masaki M   Ikeda Akihiko A   Aoyama Kazushi K   Jeschke Harald O HO   Ishii Yuto Y   Ishikawa Hajime H   Yajima Takeshi T   Okamoto Yoshihiko Y   Zhou Xuguang X   Nakamura Daisuke D   Takeyama Shojiro S   Kindo Koichi K   Matsuda Yasuhiro H YH   Kohama Yoshimitsu Y  

Proceedings of the National Academy of Sciences of the United States of America 20230807 33


The mutual coupling of spin and lattice degrees of freedom is ubiquitous in magnetic materials and potentially creates exotic magnetic states in response to the external magnetic field. Particularly, geometrically frustrated magnets serve as a fertile playground for realizing magnetic superstructure phases. Here, we observe an unconventional two-step magnetostructural transition prior to a half-magnetization plateau in a breathing pyrochlore chromium spinel by means of state-of-the-art magnetiza  ...[more]

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2022-05-05 | GSE166811 | GEO