引用された論文など

平成20年発表

Y. Kurihara, Y. Takeda, Y. Takaishi, Y. Koizumi, H. Osawa, M.Z. Ahmed, Y. Okamoto, ``Constructive ITI-coded PRML system based on a two-track model for perpendicular magnetic recording[link],'' J. Magn. Magn. Mater., vol.320, no.22, pp.3140-3143, Nov. 2008.

cited by

  1. P.M. Jermey, H.A. Shute, M.Z. Ahmed, and D.T. Wilton, [26][doi], ``Exploitation of inter-track interference in a shingled replay system ,'' J. Magn. Magn. Mater., vol.321, no.19, pp.2992-2998, Oct. 2009.
  2. A. Arrayangkool, C. Warisarn, L.M.M. Myint, and P. Kovintavewat, [2][doi], ``A simple recorded-bit patterning scheme for bit-patterned media recording ,'' 10th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), Krabi, pp.1--5, 2013.
  3. A. Arrayangkool, C. Warisarn, and P. Kovintavewat, [3], ``A Recorded-Bit Patterning Scheme with Accumulated Weight Decision for Bit-Patterned Media Recording ,'' IEICE Trans. Electron., vol.E96-C, no.12, pp.1490--1496, Dec. 2013. [doi] [CiNii] [jstage] [ieice]

平成17年発表

M.Z. Ahmed, P.J. Davey, and Y. Kurihara, ``Constructive inter-track interference (CITI) codes for perpendicular magnetic recording[link],'' J. Magn. Magn. Mater., vol.287, pp.432-436, Feb. 2005.

cited by

  1. S. Khizroev, Y. Hijazi, N. Amos, R. Chomko, and D. Litvinov, [22][link], ``Physics considerations in the design of three-dimensional and multilevel recording,'' J. Appl. Phys., vol.100, pp.063907, Sep. 2006. [doi]

平成13年発表

Y. Kurihara, H. Osawa, and Y. Okamoto, ``RLL Coded PR(1,2,3,4,3,2,1)ML Systems for Double Layer Perpendicular Magnetic Recording,'' The 8th joint MMM-Intermag Conference, CA-08, San Antonio, Texas, USA, 7-10 Jan. 2001.

cited by

  1. Jun Lee, Seong-Hun Lee: [2], Performance evaluation of detectors for perprndicular recording systems, IEEE Trans. Consumer Electronics, vol.56, no.2, pp.669--672, May 2010. [doi]

平成9年発表

H. Osawa, Y. Kurihara, Y. Okamoto, H. Muraoka, and Y. Nakamura, ``PRML Systems for Perpendicular Magnetic Recording,''

Journal of Magnetics Society of Japan

[pdf], vol.21, no.S2, pp.399-405, Oct. 1997. [doi] [CiNii]

cited by

  1. Roger Wood: [15], The Feasibility of Magnetic Recording at 1 Terabit per Square Inch, IEEE Trans. Magn. vol.36, no.1, pp.36-42, Jan. 2000. [doi]
  2. Roger Wood: [15], 1Tビット/(インチ)2のHDDを実現する( ), 日経エレクトロニクス 1999.11.29/1999.12.13, no.758/759, pp.161-168/181-185, Nov./Dec. 1999.
    関連記事: 1999/08/23号[link]
  3. Y. Tanaka: [14], Fundamental Features of Perpendicular Magnetic Recording and Design Considerations for Future Portable HDD integration, IEEE Trans. Magn. vol.41, no.10, pp.2834-2838, Oct. 2005. [doi]
  4. M. Despotovic, B. Vasic: [7], Hard disk drive recording and data detection, Telecommunications in Modern Satellite, Cable and Broadcasting Service, 2001. 5th International Conference on TELSIKS 2001, vol.2, pp.555-561, Sep. 2001. [doi]
  5. Y. Tanaka, T. Hikosaka : [5], Perpendicular recording with high squarenss CoPtCrO media, Journal of Magnetism and Magnetic Materials, vol.235, no.1-3, pp.253-258, Oct. 2001.
  6. H. Takano, Y. Nishida, M. Futamoto, M. Aoi, Y. Nakamura : [3], Possibilities of 40 Gb/in 2 perpendicular recording, Intermag 2000 Digest of Technical Papers, pp.33-33, April 2000. [doi]

平成15年度電子情報通信学会フェロー称号贈呈者(エレクトロニクスソサイエティ)

平成8年発表

Y. Kurihara, H. Osawa, Y. Okamoto, H. Muraoka, and Y. Nakamura, ``Performance of PRML systems in perpendicular magnetic recording by a bi-layered main-pole head,''

Journal of Magnetism and Magnetic Materials [link],

vol.157/158, pp.262-263, May 1996.
For perpendicular magnetic recording by a bi-layered main-pole head which shows an excellent linearity, the performance of PRML system combining partial response (PR) system with maximum likelihood (ML) decoding is studied. The bit-error rate of the PRML system using a PR(1,1,0,0,0,0, − 1, − 1) system is obtained by computer simulation and compared with that of the conventional PRML system. It is shown that our PRML system exhibits better performance than the conventional PRML system in high density recording.

cited by

  1. Choonqchae Woo, Hanqyu Cho, Daesik Hong : [4], ``An extended dual decision-feedback equalizer for high-density perpendicular magnetic recording channels,'' IEEE Trans. Magn. vol.38, no.5, pp.2343-2345, Sep. 2002. [doi]

愛媛大学大学院時代

by Osawa Lab, Ehime University