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    • 1. 发明申请
    • Annealing device and annealing method
    • 退火装置和退火方法
    • US20050201211A1
    • 2005-09-15
    • US10517604
    • 2004-05-21
    • Goro FujitaTakeshi MikiYasuhito TanakaTetsuhiro SakamotoKazuhiko Fujiie
    • Goro FujitaTakeshi MikiYasuhito TanakaTetsuhiro SakamotoKazuhiko Fujiie
    • G11B11/105G11B7/09G11B11/00
    • G11B11/10582G11B11/10523G11B11/10576G11B11/10595
    • The present invention is directed to an annealing apparatus adapted for performing anneal processing with respect to a magneto optical recording medium, which comprises a diffraction optical unit (3) for optically separating light beams emitted from a laser light source (1) into first light beams which are the 0 (zero)-th order diffracted light beams and second and third light beams which are the first order diffracted light beams, an object lens (5) for converging the first light beams to irradiate the first light beams thus converged onto magnetic layers of guide grooves or land portions forming both sides of the guide grooves, and for converging the second and third light beams to irradiate the second and third light beams thus converged onto magnetic layers in the vicinity of the boundary portions between guide grooves and land portions, and a biaxial actuator unit (6) for controlling the object lens (5) on the basis of linear characteristic of a first tracking error signal generated on the basis of intensity distribution of light quantities of rays of return light of the first light beams so that the first light beams follow the guide grooves or the land portions.
    • 本发明涉及一种用于对磁光记录介质进行退火处理的退火设备,该退火设备包括用于将从激光光源(1)发射的光束光学分离成第一光束的衍射光学单元(3) 它们是作为一级衍射光束的0(零)级衍射光束和第二和第三光束,用于会聚第一光束以照射第一光束的物镜(5),从而会聚到磁 形成导向槽的两侧的引导槽或台面部分的层,并且用于会聚第二和第三光束以照射第二和第三光束,从而会聚在引导槽和焊盘部分之间的边界部分附近的磁性层上 以及用于基于第一跟踪误差符号的线性特性来控制物镜(5)的双轴致动器单元(6) 基于第一光束的光量的光的强度分布产生,使得第一光束跟随引导槽或岸台部分。
    • 2. 发明申请
    • Method for manufacturing magneto-optical recording medium
    • 磁光记录介质的制造方法
    • US20080199602A1
    • 2008-08-21
    • US12148636
    • 2008-04-21
    • Takeshi MikiKazuhiko FujiieYasuhito TanakaGoro FujitaTetsuhiro Sakamoto
    • Takeshi MikiKazuhiko FujiieYasuhito TanakaGoro FujitaTetsuhiro Sakamoto
    • B05D5/00B05D3/06
    • G11B11/10582G11B11/10517G11B11/10584
    • A method for manufacturing a magneto-optical recording medium in which reading of recorded information is performed through domain wall displacement in a reproduction layer is provided, in which magnetic separation of groove side-wall portions is performed more reliably; as a result a magneto-optical recording medium with satisfactory recording and reproduction characteristics can be provided. The method is to manufacture a magneto-optical recording medium in which on a substrate 1 having grooves 12 at least a reproduction layer and a recording layer, each of which is formed of magnetic layers, are deposited and recorded information is reproduced through domain wall displacement in the reproduction layer; and the method includes a first annealing process in which, after depositing at least the reproduction layer and recording layer on the substrate 1 on which are formed lands 11 and grooves 12, only side-wall portions 13 between adjacent lands 11 and grooves 12 are irradiated with laser light L1, and a second magnetization annealing process in which regions including adjacent side-wall portions 13 and lands between side-wall portions 13 are irradiated with laser light L2 having a spot diameter greater than the spot diameter of the laser light in the first annealing process, while applying an external magnetic field Hex.
    • 提供了一种制造磁光记录介质的方法,其中通过再现层中的畴壁位移进行记录信息的读取,其中槽侧壁部分的磁分离更可靠地进行; 结果,可以提供具有令人满意的记录和再现特性的磁光记录介质。 该方法是制造磁光记录介质,其中在至少具有由磁层形成的再生层和记录层的凹槽12的基板1上沉积,并通过畴壁位移再现记录信息 在复制层; 并且该方法包括第一退火处理,其中在至少将再生层和记录层沉积在其上形成有焊盘11和凹槽12的基板1上之后,仅在相邻焊盘11和槽12之间照射侧壁部分13 激光L 1和第二磁化退火处理,其中包括相邻的侧壁部分13和侧壁部分13之间的区域的区域被照射具有大于激光的光斑直径的光点直径的激光L 2 在第一退火过程中,同时施加外部磁场Hex。
    • 5. 发明授权
    • Method for manufacturing magneto-optical recording medium
    • 磁光记录介质的制造方法
    • US07423939B2
    • 2008-09-09
    • US10779337
    • 2004-02-13
    • Takeshi MikiKazuhiko FujiieYasuhito TanakaGoro FujitaTetsuhiro Sakamoto
    • Takeshi MikiKazuhiko FujiieYasuhito TanakaGoro FujitaTetsuhiro Sakamoto
    • G11B11/00C23C14/35C23C16/00
    • G11B11/10582G11B11/10517G11B11/10584
    • A method for manufacturing a magneto-optical recording medium in which reading of recorded information is performed through domain wall displacement in a reproduction layer is provided, in which magnetic separation of groove side-wall portions is performed more reliably; as a result a magneto-optical recording medium with satisfactory recording and reproduction characteristics can be provided. The method is to manufacture a magneto-optical recording medium in which on a substrate 1 having grooves 12 at least a reproduction layer and a recording layer, each of which is formed of magnetic layers, are deposited and recorded information is reproduced through domain wall displacement in the reproduction layer; and the method includes a first annealing process in which, after depositing at least the reproduction layer and recording layer on the substrate 1 on which are formed lands 11 and grooves 12, only side-wall portions 13 between adjacent lands 11 and grooves 12 are irradiated with laser light L1, and a second magnetization annealing process in which regions including adjacent side-wall portions 13 and lands between side-wall portions 13 are irradiated with laser light L2 having a spot diameter greater than the spot diameter of the laser light in the first annealing process, while applying an external magnetic field Hex.
    • 提供了一种制造磁光记录介质的方法,其中通过再现层中的畴壁位移进行记录信息的读取,其中槽侧壁部分的磁分离更可靠地进行; 结果,可以提供具有令人满意的记录和再现特性的磁光记录介质。 该方法是制造磁光记录介质,其中在至少具有由磁层形成的再生层和记录层的凹槽12的基板1上沉积,并通过畴壁位移再现记录信息 在复制层; 并且该方法包括第一退火处理,其中在至少将再生层和记录层沉积在其上形成有焊盘11和凹槽12的基板1上之后,仅在相邻焊盘11和槽12之间照射侧壁部分13 激光L 1和第二磁化退火处理,其中包括相邻的侧壁部分13和侧壁部分13之间的区域的区域被照射具有大于激光的光斑直径的光点直径的激光L 2 在第一退火过程中,同时施加外部磁场H
    • 10. 发明申请
    • PHARMACEUTICAL COMPOSITIONS FOR TREATMENT OR PREVENTION OF HBV INFECTION
    • 用于治疗或预防HBV感染的药物组合物
    • US20110160252A1
    • 2011-06-30
    • US12999055
    • 2009-06-18
    • Masashi MizokamiYasuhito TanakaMasaya SugiyamaMasayuki Sudoh
    • Masashi MizokamiYasuhito TanakaMasaya SugiyamaMasayuki Sudoh
    • A61K31/44C07C229/34A61K31/195C07D213/55A61P31/12
    • A61K31/13A61K31/165A61K31/201A61K31/381A61K31/405A61K31/4406A61K31/4418
    • First, the present inventors assessed the effect of the compound represented by formula (III) below on Huh-7 cells infected with HBV, and demonstrated that the compound alone had an anti-HBV effect in vitro.Formula (III) Then, the present inventors revealed that the HBV replication-suppressing effect of PEG-IFN is enhanced in chimeric mice having a human liver infected with genotype C or A HBV when PEG-IFN is used in combination with the compound represented by formula (III) above. The present inventors also revealed that the HBV replication-suppressing effect of Entecavir is enhanced in chimeric mice having a human liver infected with genotype C HBV (wild-type and Entecavir-resistant strains) when Entecavir is used in combination with the compound represented by formula (III) above. In addition, the present inventors revealed that the compound represented by formula (III) above exerts the anti-HBV effect not only against wild-type HBV strains but also against Entecavir- and/or Lamivudine-resistant HBV strains.
    • 首先,本发明人评估了下述式(III)表示的化合物对HBV感染的Huh-7细胞的作用,并证明该化合物在体外具有抗HBV作用。 式(III)然后,本发明人揭示了当将PEG-IFN与由下列化合物组合使用时,将具有基因型C或A HBV感染的人肝的嵌合小鼠中的PEG-IFN的HBV复制抑制作用增强 上述式(III)。 本发明人还发现,当恩替卡韦与式(I)表示的化合物组合使用时,恩替卡韦的HBV复制抑制作用在具有感染基因型C HBV(野生型和恩替卡韦抗性菌株)的人肝脏的嵌合小鼠中得到增强 (三)。 此外,本发明人发现,上述式(III)表示的化合物不仅对抗野生型HBV株而且对依替卡韦和/或拉米夫定耐药的HBV株产生抗HBV作用。