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Publication
Featured researches published by Yoshihisa Ishikawa.
Advanced Materials | 2017
Ping Miao; Xiaohuan Lin; Akihiro Koda; Sanghyun Lee; Yoshihisa Ishikawa; Shuki Torii; Masao Yonemura; Takashi Mochiku; Hajime Sagayama; Shinichi Itoh; Kazutaka Ikeda; Toshiya Otomo; Yingxia Wang; Ryosuke Kadono; Takashi Kamiyama
Materials that show negative thermal expansion (NTE) have significant industrial merit because they can be used to fabricate composites whose dimensions remain invariant upon heating. In some materials, NTE is concomitant with the spontaneous magnetization due to the magnetovolume effect (MVE). Here the authors report a new class of MVE material; namely, a layered perovskite PrBaCo2 O5.5+x (0 ≤ x ≤ 0.41), in which strong NTE [β ≈ -3.6 × 10-5 K-1 (90-110 K) at x = 0.24] is triggered by embedding ferromagnetic (F) clusters into the antiferromagnetic (AF) matrix. The strongest MVE is found near the boundary between F and AF phases in the phase diagram, indicating the essential role of competition between the F-clusters and the AF-matrix. Furthermore, the MVE is not limited to the PrBaCo2 O5.5+x but is also observed in the NdBaCo2 O5.5+x . The present study provides a new approach to obtaining MVE and offers a path to the design of NTE materials.
arXiv: Strongly Correlated Electrons | 2018
Keisuke Tomiyasu; Naoko Ito; Ryuji Okazaki; Yuki Takahashi; Mitsugi Onodera; Kazuaki Iwasa; Tsutomu Nojima; Takuya Aoyama; Kenya Ohgushi; Yoshihisa Ishikawa; Takashi Kamiyama; Seiko Ohira-Kawamura; Maiko Kofu; Sumio Ishihara
Spin-state transition, also known as spin crossover, plays a key role in diverse systems, including minerals and biological materials. In theory, the boundary range between the low- and high-spin states is expected to enrich the transition and give rise to unusual physical states. However, no compound that realizes a nearly degenerate critical range as the ground state without requiring special external conditions has yet been experimentally identified. This study reports that, by comprehensive measurements of macroscopic physical properties, X-ray diffractometry, and neutron spectroscopy, the Sc substitution in LaCoO
Solid State Ionics | 2016
Koichi Kino; Masao Yonemura; Yoshihisa Ishikawa; Takashi Kamiyama
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Journal of Molecular Structure | 2017
Takeshi Matsukawa; Akinori Hoshikawa; Yoshihisa Ishikawa; Toru Ishigaki
destabilizes its nonmagnetic low-spin state and generates an anomalous paramagnetic state accompanied by the enhancement of transport gap and magneto-lattice-expansion as well as the contraction of Co--O distance with the increase of electron site-transfer. These phenomena are not well described by the mixture of conventional low- and high-spin states, but by their quantum superposition occurring on the verge of a spin-state transition. The present study enables us to significantly accelerate the design of new advanced materials without requiring special equipment based on the concept of quantum spin-state criticality.
Solid State Ionics | 2016
Yoshihisa Ishikawa; Sergey Danilkin; Maxim Avdeev; V. I. Voronkova; Takashi Sakuma
Physica B-condensed Matter | 2018
Yoshihisa Ishikawa; Junrong Zhang; Ryoji Kiyanagi; Masao Yonemura; Takeshi Matsukawa; Akinori Hoshikawa; Toru Ishigaki; Shuki Torii; Ryoko Oishi-Tomiyasu; Takashi Kamiyama
arXiv: Strongly Correlated Electrons | 2017
Keisuke Tomiyasu; Naoko Ito; Ryuji Okazaki; Yuki Takahashi; Mitsugi Onodera; Kazuaki Iwasa; Tsutomu Nojima; Takuya Aoyama; Kenya Ohgushi; Yoshihisa Ishikawa; Takashi Kamiyama; Sumio Ishihara
Physica B-condensed Matter | 2017
Widya Rika Puspita; Hiroyuki Takeya; Takashi Mochiku; Yoshihisa Ishikawa; Sanghyun Lee; Shuki Torii; Masao Yonemura; Takashi Kamiyama
Physica B-condensed Matter | 2017
Sanghyun Lee; Shuki Torii; Yoshihisa Ishikawa; Masao Yonemura; Taketo Moyoshi; Takashi Kamiyama
Physica B-condensed Matter | 2017
Zhijian Tan; Ping Miao; Xiaohuan Lin; Sanghyun Lee; Yoshihisa Ishikawa; Masato Hagihala; Shuki Torii; Yingxia Wang; Masao Yonemura; Takashi Kamiyama