상세 보기
Observation of a multiferroic critical end point
- Kim, Jae Wook;
- Haam, S. Y.;
- Oh, Y. S.;
- Park, S.;
- Cheong, S.-W.;
- 외 7명
WEB OF SCIENCE
54SCOPUS
48초록
The study of abrupt increases in magnetization with magnetic field known as metamagnetic transitions has opened a rich vein of new physics in itinerant electron systems, including the discovery of quantum critical end points with a marked propensity to develop new kinds of order. However, the electric analogue of the metamagnetic critical end point, a "metaelectric" critical end point, has been rarely studied. Multiferroic materials wherein magnetism and ferroelectricity are cross-coupled are ideal candidates for the exploration of this novel possibility using magnetic-field (H) as a tuning parameter. Herein, we report the discovery of a magnetic-field-induced metaelectric transition in multiferroic BiMn2O5, in which the electric polarization (P) switches polarity along with a concomitant Mn spin-flop transition at a critical magnetic field H-c. The simultaneous metaelectric and spin-flop transitions become sharper upon cooling but remain a continuous cross-over even down to 0.5 K. Near the P = 0 line realized at mu H-0(c) approximate to 18 T below 20 K, the dielectric constant (epsilon) increases significantly over wide field and temperature (T) ranges. Furthermore, a characteristic power-law behavior is found in the P(H) and epsilon(H) curves at T = 0.66 K. These findings indicate that a magnetic-field-induced metaelectric critical end point is realized in BiMn2O5 near zero temperature.
키워드
- 제목
- Observation of a multiferroic critical end point
- 저자
- Kim, Jae Wook; Haam, S. Y.; Oh, Y. S.; Park, S.; Cheong, S.-W.; Sharma, P. A.; Jaime, M.; Harrison, N.; Han, Jung Hoon; Jeon, Gun-Sang; Coleman, P.; Kim, Kee Hoon
- 발행일
- 2009-09
- 유형
- Article
- 권
- 106
- 호
- 37
- 페이지
- 15573 ~ 15576
- 언어
- ENG
- 출판사
- NATL ACAD SCIENCES
- 발행국가
- 미국
- 분량
- 4 페이지
- ISSN
- E 1091-6490
P 0027-8424