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Featured researches published by Kazushi Shirai.


Journal of Applied Physics | 1997

NUCLEATION OF DOMAIN WALLS IN IRON GARNET SINGLE CRYSTALS GROWN FROM LIQUID PHASE EPITAXY

Kazushi Shirai; Kenji Ishikura; Norio Takeda

When bismuth-substituted iron garnet (RBi)IG single crystals grown from liquid-phase-epitaxy (LPE) are magnetized, the magnetic domain structure gradually evolves. However the domain-wall nucleation that occurs during the demagnetization is not yet understood clearly. This phenomenon is important, because the working of some optical devices that utilize (RBi)IG single crystals depends directly on the formation of domains of opposite direction. In this paper, the authors present a theoretical description of domain-wall nucleation in LPE-grown (RBi)IG single crystals. It was found that the nucleation field is determined by the strength of the microscopic domain-wall which is fixed on the surface of the crystal. Furthermore, the nucleation field is modified by the addition of a magnetic field.


Archive | 1993

Reflection type magnetooptic sensor head with faraday rotator

Kazushi Shirai; Toshihiro Shinbo; Norio Takeda; Mitsuzo Arii


Archive | 1997

Faraday rotator with antireflection film

Kenji Ishikura; Kiyonari Hiramatsu; Kazushi Shirai; Norio Takeda


Archive | 1995

Bismuth-substituted rare earth iron garnet single crystal

Kazushi Shirai; Kenji Ishikura; Norio Takeda


Archive | 1993

Magnetooptic sensor head

Kazushi Shirai; Toshihiro Shinbo; Norio Takeda; Mitsuzo Arii


Archive | 1997

Faraday rotator having a rectangular shaped hysteresis

Kazushi Shirai; Norio Takeda; Kiyonari Hiramatsu


Archive | 1989

Magneto-optic garnet

Mitsuzo Arii; Norio Takeda; Yasunori Tagami; Kazushi Shirai


Archive | 1995

Low saturated magnetic field bismuth-substituted rare earth iron garnet single crystal and its use

Kazushi Shirai; Kenji Ishikura; Norio Takeda


Archive | 1998

Reflection type magneto-optic sensor

Kazushi Shirai


Archive | 1997

Faraday rotator for magneto-optic sensors

Kazushi Shirai; Norio Takeda

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