Zobrazeno 1 - 10
of 23
pro vyhledávání: '"Fuyuki Ando"'
Autor:
Hiroto Arima, Md. Riad Kasem, Hossein Sepehri-Amin, Fuyuki Ando, Ken-ichi Uchida, Yuto Kinoshita, Masashi Tokunaga, Yoshikazu Mizuguchi
Publikováno v:
Communications Materials, Vol 5, Iss 1, Pp 1-8 (2024)
Abstract Applying a magnetic field to a solid changes its thermal-transport properties. Although such magneto-thermal-transport phenomena are usually small effects, giant magneto-thermal resistance has recently been observed in spintronic materials a
Externí odkaz:
https://doaj.org/article/bd2c2ea782c346e086755565c202638b
Publikováno v:
APL Energy, Vol 2, Iss 1, Pp 016103-016103-6 (2024)
A transverse thermoelectric generator for magnetic-field-free and high-density power generation utilizing the anomalous Nernst effect is constructed and its performance is characterized. By alternately stacking two different permanent magnets with th
Externí odkaz:
https://doaj.org/article/deebd367bba6449f8765dcd7198f935f
Autor:
Woo Seung Ham, Thi Huynh Ho, Yoichi Shiota, Tatsuya Iino, Fuyuki Ando, Tetsuya Ikebuchi, Yoshinori Kotani, Tetsuya Nakamura, Daisuke Kan, Yuichi Shimakawa, Takahiro Moriyma, Eunji Im, Nyun‐Jong Lee, Kyoung‐Whan Kim, Soon Cheol Hong, Sonny H. Rhim, Teruo Ono, Sanghoon Kim
Publikováno v:
Advanced Science, Vol 10, Iss 12, Pp n/a-n/a (2023)
Abstract Spin current, converted from charge current via spin Hall or Rashba effects, can transfer its angular momentum to local moments in a ferromagnetic layer. In this regard, the high charge‐to‐spin conversion efficiency is required for magne
Externí odkaz:
https://doaj.org/article/ea450fb3e9974956b85895e2a3f77216
Autor:
Kihiro T. Yamada, Alexey V. Kimel, Kiran Horabail Prabhakara, Sergiu Ruta, Tian Li, Fuyuki Ando, Sergey Semin, Teruo Ono, Andrei Kirilyuk, Theo Rasing
Publikováno v:
Frontiers in Nanotechnology, Vol 4 (2022)
All-optical helicity dependent switching (AO-HDS), deterministic control of magnetization by circularly polarized laser pulses, allows to efficiently manipulate spins without the need of a magnetic field. However, AO-HDS in ferromagnetic metals so fa
Externí odkaz:
https://doaj.org/article/11976cd323124cb1b49f226cabf4ff04
Autor:
Youichi Yanase, Takahiro Moriyama, Tian Li, Teruo Ono, Yoichi Shiota, Fuyuki Ando, Jun Ishizuka, Yuta Miyasaka, Tomonori Arakawa
Publikováno v:
Nature. 584:373-376
Nonlinear optical and electrical effects associated with a lack of spatial inversion symmetry allow direction-selective propagation and transport of quantum particles, such as photons1 and electrons2-9. The most common example of such nonreciprocal p
Publikováno v:
Journal of the Magnetics Society of Japan. 43:17-20
Autor:
Tomohiro Koyama, Yoichi Shiota, Fuyuki Ando, Yoshinori Kotani, Tetsuya Nakamura, Kihiro T. Yamada, Hayato Mizuno, Kohji Nakamura, Kentaro Toyoki, Teruo Ono, Daichi Chiba
Publikováno v:
Physical Review B. 102
Electric field modulations of magnetism in ferromagnetic metals are in general ascribed to the electric field effects on the orbitals. However, a direct observation of the electric-field-induced changes in the orbital states of a ferromagnetic metal
Autor:
Fuyuki, Ando, Yuta, Miyasaka, Tian, Li, Jun, Ishizuka, Tomonori, Arakawa, Yoichi, Shiota, Takahiro, Moriyama, Youichi, Yanase, Teruo, Ono
Publikováno v:
Nature. 584(7821)
Nonlinear optical and electrical effects associated with a lack of spatial inversion symmetry allow direction-selective propagation and transport of quantum particles, such as photons
Autor:
Yoichi Shiota, Ryo Kawarazaki, Takahiro Moriyama, Hideki Narita, Teruo Ono, Youichi Yanase, Yuhei Ikeda, Akito Daido, Fuyuki Ando, Ryusuke Hisatomi, Yuta Miyasaka
Publikováno v:
Applied Physics Express. 14:073003
Autor:
Hideki Narita, Teruo Ono, Yuichi Kasahara, Masahiro Naritsuka, Yuta Miyasaka, Yoichi Shiota, Yuichi Shimakawa, Yuji Matsuda, Fuyuki Ando, Daisuke Kan, Takahiro Moriyama, Ryo Kawarazaki
Publikováno v:
Japanese Journal of Applied Physics. 60:060902
Artificially engineered superlattice offers highly flexible control of the quantized electronic state by manipulating its lattice structure. We fabricated artificially engineered superlattices [Nb/V/Ta] n as a new class of superconducting superlattic