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Dive into the research topics where Naoyasu Iketani is active.

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IEEE Transactions on Magnetics | 2009

Study of Lubricant Depletion Induced by Laser Heating in Thermally Assisted Magnetic Recording Systems—Effect of Lubricant Film Materials

Norio Tagawa; Ryo Kakitani; Hiroshi Tani; Naoyasu Iketani; Ikuo Nakano

Thermally assisted magnetic recording (TAMR) is one of the novel technologies that are employed for achieving magnetic recording densities higher than 1 Tb/in2. With regard to this novel technology, it has been suggested that there exists a critical head-disk interface (HDI) issue associated with the use of ultrathin liquid lubricant films on the disk surface. This problem is attributed to the fact that these films are heated to high temperatures by using laser beams in order to reduce magnetic coercivity. In this study, a fundamental research on the lubricant depletion caused due to laser heating in TAMR systems was conducted. That is, the effect of lubricant film materials on lubricant depletion was investigated. In this experimental study, four types of lubricant film materials-Zdol2000, Zdol4000, Ztetraol2000, and A20H2000-were used, and the differences in the characteristics of lubricant depletion for each tested lubricant film were investigated. The effect of the molecular weight as well as the end group of the lubricant on the lubricant depletion was discussed and clarified by analyzing the obtained experimental results. In addition, it was found that the depletion characteristics of ultrathin liquid lubricant films could be explained by using experimental results obtained from the thermogravimetric analysis for each bulk lubricant material.


Archive | 1993

Magneto-optical recording medium and recording and reproducing method and optical head designed for the magneto-optical recording medium

Yoshiteru Murakami; Junji Hirokane; Junichiro Nakayama; Junsaku Nakajima; Akira Takahashi; Kenji Ohta; Naoyasu Iketani


Archive | 1997

Optical recording medium having a wobbling section for recording address information and methods of recording and reproduction using same

Tetsuya Inui; Hideaki Sato; Junichiro Nakayama; Naoyasu Iketani; Michinobu Mieda; Yoshiteru Murakami; Junji Hirokane; Akira Takahashi


ieee international magnetics conference | 2005

Near field assisted magnetic recording

Shintaro Miyanishi; Naoyasu Iketani; Kazuhisa Takayama; Kohsuke Innami; Ippei Suzuki; Tazuko Kitazawa; Yasushi Ogimoto; Yoshiteru Murakami; Kunio Kojima; Akira Takahashi


Archive | 2002

Magneto-optical storage media

Go Mori; Naoyasu Iketani; Michinobu Mieda; Akira Takahashi


Archive | 1998

Optical recording disk capable of suppressing bimetallic effects caused by thermal expansion

Go Mori; Michinobu Mieda; Naoyasu Iketani; Ippei Suzuki; Yoshiteru Murakami; Akira Takahashi


Archive | 1998

Magneto-optical recording medium having a signal reproducing region of the reproducing layer larger than the record bit in the recording layer

Go Mori; Naoyasu Iketani; Michinobu Mieda; Ippei Suzuki; Junji Hirokane; Akira Takahashi


Archive | 1994

Magneto-optical recording medium having a readout layer with varying composition and curie temperature

Yoshiteru Murakami; Naoyasu Iketani; Akira Takahashi; Kenji Ohta


Archive | 1998

Optical disk having virtually constant width recording track and optical disk apparatus

Naoyasu Iketani; Go Mori; Michinobu Mieda; Yoshiteru Murakami; Junji Hirokane; Akira Takahashi


Archive | 2000

Magneto-optical recording medium having intermediate layer of in-plane magnetization

Akira Takahashi; Michinobu Mieda; Naoyasu Iketani; Go Mori; Junsaku Nakajima; Yoshiteru Murakami; Junji Hirokane

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Yoshiteru Murakami

National Archives and Records Administration

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Michinobu Mieda

National Archives and Records Administration

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Kenji Ohta

National Archives and Records Administration

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Junsaku Nakajima

National Archives and Records Administration

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Ippei Suzuki

National Archives and Records Administration

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Hideaki Sato

National Archives and Records Administration

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Tetsuya Inui

National Archives and Records Administration

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Hiroyuki Katayama

National Archives and Records Administration

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Kunio Kojima

National Archives and Records Administration

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