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    • 5. 发明申请
    • MULTILAYER OPTICAL RECORDING MEDIUM
    • 多层光学记录介质
    • US20120102509A1
    • 2012-04-26
    • US13277458
    • 2011-10-20
    • Motohiro INOUETakashi KikukawaAtsuko KosudaTomoki UshidaHideki Hirata
    • Motohiro INOUETakashi KikukawaAtsuko KosudaTomoki UshidaHideki Hirata
    • G11B7/24
    • G11B7/24038G11B2007/24314G11B2007/2432
    • The multilayer optical recording medium with six or more recording and reading layers disposed one above the other has at least two or more recording and reading layer groups. The recording and reading layer groups each include a plurality of recording and reading layers successively disposed one above the other. The reflectance of each of the recording and reading layers in a stacked state decreases in the order from a front side near a light incident surface toward a back side far from the light incident surface. A recording and reading layer nearest the front side among the recording and reading layers in the recording and reading layer group nearer the back side has a reflectance in a stacked state higher than that of a recording and reading layer nearest the back side among the recording and reading layers in the recording and reading layer group nearer the front side.
    • 具有六个或更多个记录和读取层的多层光记录介质具有至少两个或更多个记录和读取层组。 记录和读取层组各自包括相继地彼此排列的多个记录和读取层。 层叠状态下的各记录层和读取层的反射率从靠近光入射面的前侧向远离光入射面的背面逐渐减小。 记录和读取层组中靠近背面的记录和读取层之间的记录和读取层的记录和读取层的堆叠状态的反射率高于记录和记录层中最靠背侧的记录和读取层的反射率, 阅读层组在阅读层组中靠近正面。
    • 6. 发明申请
    • METHOD FOR EVALUATING READ SIGNAL
    • 评估阅读信号的方法
    • US20120069727A1
    • 2012-03-22
    • US13307040
    • 2011-11-30
    • Takashi KIKUKAWA
    • Takashi KIKUKAWA
    • G11B27/36G11B7/1374
    • G11B20/10009G11B20/10055G11B20/10101G11B20/1012G11B20/10481G11B2220/2537
    • A method for evaluating a read signal obtained by irradiating a medium with a laser beam through an objective lens and reading data from the reflected laser beam by a PRML detection method is provided. The method includes: a sampling step of sampling the data obtained from the reflected laser beam at clock timings to obtain sampled values; and a step of, when a constraint length of a PR class in the PRML detection method is an even number, computing an intermediate sampled value for evaluation using at least adjacent two of the sampled values arranged in the order sampled at the clock timings. The provided method is an objective evaluation method when the PRML detection method is used, whereby the selection of a recording medium and a reading apparatus is facilitated.
    • 提供了一种用于评估通过用物镜照射激光束的介质并通过PRML检测方法从反射的激光束读取数据而获得的读取信号的方法。 该方法包括:采样步骤,在时钟定时对从反射激光束获得的数据进行采样,以获得采样值; 以及当PRML检测方法中的PR类的约束长度是偶数时,使用在时钟定时采样的顺序中排列的至少相邻的两个采样值来计算用于评估的中间采样值的步骤。 所提供的方法是当使用PRML检测方法时的客观评价方法,由此便于对记录介质和读取装置的选择。
    • 10. 发明申请
    • INFORMATION READOUT METHOD FOR NON MASK LAYER TYPE OPTICAL INFORMATION MEDIUM
    • 用于非掩蔽层类型光信息介质的信息读出方法
    • US20090135711A1
    • 2009-05-28
    • US12352304
    • 2009-01-12
    • Takashi KIKUKAWATatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • Takashi KIKUKAWATatsuya KatoHajime UtsunomiyaHiroshi Shingai
    • G11B7/00
    • G11B7/005G11B7/1263G11B7/24
    • An information readout method for an optical information medium comprising an information recording layer having pits or recorded marks representative of information data involves the step of irradiating a laser beam to the information recording layer through an objective lens for providing readings of the pits or recorded marks. When the laser beam has a wavelength λ of 400 to 410 nm, the objective lens has a numerical aperture NA of 0.70 to 0.85, and the pits or recorded marks have a minimum size PL of up to 0.36λ/NA, readout is carried out at a power Pr of at least 0.4 mW for the laser beam. When the laser beam has a wavelength λ of 630 to 670 nm, the objective lens has a numerical aperture NA of 0.60 to 0.65, and the pits or recorded marks have a minimum size PL of up to 0.36λ/NA, readout is carried out at a power Pr of at least 1.0 mW for the laser beam. Pits or recorded marks of a size approximate to the resolution limit determined by diffraction can be read out at a high C/N.
    • 包括具有表示信息数据的凹坑或记录标记的信息记录层的光信息介质的信息读出方法包括通过用于提供凹坑或记录标记的读数的物镜将激光束照射到信息记录层的步骤。 当激光束具有400至410nm的波长λ时,物镜的数值孔径NA为0.70至0.85,并且凹坑或记录标记具有高达0.36λ/ NA的最小尺寸PL,读出被执行 在激光束的功率Pr为至少0.4mW。 当激光束具有630至670nm的波长λ时,物镜的数值孔径NA为0.60至0.65,并且凹坑或记录的标记具有高达0.36λ/ NA的最小尺寸PL,读出被执行 在激光束的功率Pr为至少1.0mW。 通过衍射确定的大小接近分辨率极限的刻痕或记录标记可以高C / N读出。