Optical recording medium and recording film material
    1.
    发明申请
    Optical recording medium and recording film material 有权
    光记录介质和记录膜材料

    公开(公告)号:US20080239934A1

    公开(公告)日:2008-10-02

    申请号:US12076070

    申请日:2008-03-13

    IPC分类号: G11B7/24

    摘要: An optical recording medium is provided which includes two or more information layers in which an Sb-based eutectic material is used as the material for a recording film of a translucent information layer. There is also provided a recording film material for the optical recording medium. The translucent information layer is configured to include a recording film formed of a phase change material SbxGeyInz containing Sb, Ge, and In in an atomic ratio of x:y:z, where 5≦y≦15 and 4≦z≦15 are satisfied. The recording film further includes Te in an atomic ratio of a, provided that x+y+z+a=100 and 4≦a≦15 are satisfied. An interface layer formed of a ZrO2—Cr2O3 film having a thickness of 2 nm or more and 10 nm or less is provided on the laser beam incident side of the recording film. When the compositional ratio of the ZrO2—Cr2O3 film is given by ZrO2:Cr2O3=B:C (mol %), 20≦B≦90, 10≦C≦80, and B+C=100 are satisfied.

    摘要翻译: 提供了一种光记录介质,其包括其中使用Sb基共晶材料作为半透明信息层的记录膜的材料的两个或更多个信息层。 还提供了一种用于光学记录介质的记录膜材料。 半透明信息层被配置为包括由包含Sb,Ge和Sb的相变材料Sb x Sub x Z z形成的记录膜;以及 在x:y:z的原子比中,其中5 <= y <= 15且4 <= z <= 15。 如果满足x + y + z + a = 100和4 <= a <= 15,则记录膜还包括原子比a的Te。 提供由厚度为2nm以上且10nm以下的ZrO 2·2L 2 O 3·3膜形成的界面层 在记录膜的激光束入射侧。 当ZrO 2→2→2→3 <3>膜的组成比由ZrO 2:Cr: B = C(摩尔%),20 <= B <= 90,10 <= C <= 80,B + C = 100。

    Optical recording medium and recording film material
    2.
    发明申请
    Optical recording medium and recording film material 有权
    光记录介质和记录膜材料

    公开(公告)号:US20080175125A1

    公开(公告)日:2008-07-24

    申请号:US12010163

    申请日:2008-01-22

    IPC分类号: G11B3/74

    摘要: A next-generation optical recording medium has two or more information layers which include a translucent information layer. The translucent information layer has a recording film and an interface layer, provided adjacent to the recording film on the side of the light incident surface. The recording film is made of a phase change material having SbxTeyGez elements and elemental ratios. Y satisfies 5≦y≦15 and z satisfies 5≦z≦15. When In having an elemental ratio of a is further added and x+y+z+a=100 holds, a satisfies 4≦a≦15. The interface layer comprises of ZrO2—Cr2O3 film thickness of which is in a range of from 2 nm to 10 nm. When ZrO2:Cr2O3═C:D (mol %), the compositional ratios ZrO2 and Cr2O3 in the ZrO2—Cr2O3 film, holds, the C satisfies 20≦C≦90, and the D satisfies 10≦D≦80, and the C and the D satisfy C+D=100. The ZrO2 is stabilized ZrO2 which contains Y2O3, when ZrO2:Y2O3=(100-X):X (mol %), the compositional ratios ZrO2 and Y2O3 in the stabilized ZrO2, holds, the X satisfies 2≦X≦10.

    摘要翻译: 下一代光记录介质具有包括半透明信息层的两个或多个信息层。 半透明信息层具有记录膜和界面层,与光入射表面侧的记录膜相邻。 该记录膜由具有Sb x Si x Y y z z z元素和元素比的相变材料制成。 Y满足5 <= y <= 15,z满足5 <= z <= 15。 当进一步添加具有a的元素比率的In并且x + y + z + a = 100成立时,满足4 <= a <= 15。 界面层包含ZrO 2→2→2→3→3→3膜,其膜厚在2nm至10nm的范围内。 当ZrO 2:Cr 2 O 3 -C(D)(摩尔%)时,组成比ZrO 2 < 和ZrO 2 -r 2 O 3 O 3膜中的Cr 2 O 3 O 3 满足20 <= C <= 90,D满足10 <= D <= 80,C和D满足C + D = 100。 当ZrO 2 2时,ZrO 2 2是稳定的含有Y 2 O 3 O 3的ZrO 2 (100-X):X(摩尔%),组成比ZrO 2和Y 2 3 <3>,X满足2 <= X <= 10。

    Optical recording medium
    3.
    发明授权
    Optical recording medium 失效
    光记录介质

    公开(公告)号:US6087067A

    公开(公告)日:2000-07-11

    申请号:US55873

    申请日:1998-04-07

    IPC分类号: G11B7/24 G11B7/254 G11B7/257

    摘要: An optical recording medium of phase change type, and in particular, a dual side medium prepared by adhering two single side media is provided. In this medium, deformation of record marks generated in the overwriting due to difference in light absorption between the record marks and the region other than the record marks is prevented by providing a reflective layer of high light transmission, and increase in jitter and failure of track servo and focus servo caused by uneven coating of the adhesive layer and the resin protective layer are prevented. The optical recording medium comprises a substrate, a recording layer of phase change type on the surface side of the substrate, and a reflective layer and a light absorption layer disposed in this order on the surface side of the recording layer. The light absorption layer has a light transmission of 85% or higher in wavelength range S (wavelength in the range of 400 to 450 nm), up to 55% at the recording/reproducing wavelength, and 80% or higher in wavelength range L (wavelength in the range of 800 to 830 nm).

    摘要翻译: 提供了相变型的光记录介质,特别是提供了通过粘附两个单面介质制备的双面介质。 在该介质中,由于记录标记与记录标记之外的区域之间的光吸收差异而在重写中产生的记录标记的变形通过提供高光传输的反射层而被防止,并且增加了轨迹的抖动和故障 防止了粘合剂层和树脂保护层的不均匀涂覆引起的伺服和聚焦伺服。 光记录介质包括基板,基板的表面侧的相变型记录层,以及依次设置在记录层的表面侧的反射层和光吸收层。 光吸收层的波长范围S(波长在400〜450nm)的光透射率高达85%以上,记录/再生波长为55%以下,波长范围为80%以上 波长在800至830nm的范围内)。

    Optical recording medium and recording film material
    4.
    发明授权
    Optical recording medium and recording film material 有权
    光记录介质和记录膜材料

    公开(公告)号:US07960006B2

    公开(公告)日:2011-06-14

    申请号:US12010163

    申请日:2008-01-22

    IPC分类号: B32B3/02

    摘要: A next-generation optical recording medium has two or more information layers which include a translucent information layer. The translucent information layer has a recording film and an interface layer, provided adjacent to the recording film on the side of the light incident surface. The recording film is made of a phase change material having SbxTeyGez elements and elemental ratios. Y satisfies 5≦y≦15 and z satisfies 5≦z≦15. When In having an elemental ratio of a is further added and x+y+z+a=100 holds, a satisfies 4≦a≦15. The interface layer comprises of ZrO2—Cr2O3 film thickness of which is in a range of from 2 nm to 10 nm. When ZrO2:Cr2O3═C:D (mol %), the compositional ratios ZrO2 and Cr2O3 in the ZrO2—Cr2O3 film, holds, the C satisfies 20≦C≦90, and the D satisfies 10≦D≦80, and the C and the D satisfy C+D=100. The ZrO2 is stabilized ZrO2 which contains Y2O3, when ZrO2:Y2O3=(100−X):X (mol %), the compositional ratios ZrO2 and Y2O3 in the stabilized ZrO2, holds, the X satisfies 2≦X≦10.

    摘要翻译: 下一代光记录介质具有包括半透明信息层的两个或多个信息层。 半透明信息层具有记录膜和界面层,与光入射表面侧的记录膜相邻。 记录膜由具有SbxTeeyGez元素和元素比的相变材料制成。 Y满足5&nlE; y&nlE; 15和z满足5&nlE; z&nlE; 15。 当进一步添加具有a的元素比率的In并且x + y + z + a = 100成立时,a满足4&nlE; a&nlE; 15。 界面层由ZrO 2 -Cr 2 O 3膜厚度在2nm至10nm的范围内。 当ZrO 2:Cr 2 O 3 = C:D(摩尔%)时,ZrO 2 -Cr 2 O 3膜中的ZrO 2和Cr 2 O 3的组成比保持为C,满足20&nlE; C&nlE; 90,D满足10&nlE; D&nlE; 80,C D满足C + D = 100。 当ZrO 2:Y 2 O 3 =(100-X):X(摩尔%)时,ZrO 2为稳定的含有Y 2 O 3的ZrO 2,稳定的ZrO 2中的ZrO 2和Y 2 O 3的组成比例成立,X满足2&nlE; X&nlE; 10。

    Optical recording method and medium
    5.
    发明授权
    Optical recording method and medium 有权
    光记录方法和介质

    公开(公告)号:US07197005B2

    公开(公告)日:2007-03-27

    申请号:US09971704

    申请日:2001-10-09

    IPC分类号: G11B7/24

    摘要: In an optical recording medium including a grooved light-transparent substrate, a phase change recording layer, a dielectric layer and a reflective layer, recording is carried out by irradiating a laser beam to the recording layer through an objective lens in an optical system. The recording is carried out in a groove recording mode under the conditions: 0.48≦PT/(λ/NA)≦0.74, and PT≦0.50 μm wherein λ is a laser beam wavelength, NA is an objective lens numerical aperture, and PT is a track pitch, thereby forming a recorded mark having opposite ends extending out of the groove. This enables high density recording and increases the data transfer rate of a phase change optical recording medium.

    摘要翻译: 在包括带槽的光透明基板,相变记录层,电介质层和反射层的光记录介质中,通过光学系统中的物镜将激光束照射到记录层来进行记录。 在凹槽记录模式下,在0.48≤P /(λ/ NA)<= 0.74和P <=0.50μm的条件下进行记录 其中λ是激光束波长,NA是物镜数值孔径,并且P T T是轨道间距,从而形成具有相对端延伸出凹槽的记录标记。 这使得能够进行高密度记录并增加相变光学记录介质的数据传送速率。

    Optical recording method for high transfer rates
    6.
    发明授权
    Optical recording method for high transfer rates 失效
    高传输速率的光记录方法

    公开(公告)号:US07177254B2

    公开(公告)日:2007-02-13

    申请号:US10109594

    申请日:2002-03-27

    IPC分类号: G11B7/0045 G11B20/10 G11B7/00

    CPC分类号: G11B7/0062 G11B20/10

    摘要: An optical recording method that performs recording by irradiating optical recording media with laser beam modulated in intensity based on a write waveform is provided. The write waveform has a plurality of write pulse blocks for forming write marks, and each write pulse block has at least one type of upward pulse. In the event that the width of said upward pulse is so narrow that the laser beam intensity corresponding to the peak intensity of that upward pulse cannot be obtained, the peak intensity of that upward pulse is increased so that, in said laser beam, the beam intensity it should have or a value close thereto is obtained. Thereby, good recording and playback characteristics can be obtained even when recording at a high transfer rate.

    摘要翻译: 提供了一种通过基于写入波形以强度激光束照射光学记录介质进行记录的光学记录方法。 写入波形具有用于形成写入标记的多个写入脉冲块,并且每个写入脉冲块具有至少一种类型的向上的脉冲。 在所述上升脉冲的宽度如此窄使得不能获得与该向上脉冲的峰值强度对应的激光束强度的情况下,该向上脉冲的峰值强度增加,使得在所述激光束中, 获得其应具有的强度或接近其值。 因此,即使以高传送速度进行记录,也可以获得良好的记录和播放特性。

    Method for evaluating optical recording medium, evaluation device, and evaluation system
    7.
    发明申请
    Method for evaluating optical recording medium, evaluation device, and evaluation system 审中-公开
    光学记录介质评价方法,评价装置及评价体系

    公开(公告)号:US20080165642A1

    公开(公告)日:2008-07-10

    申请号:US12003582

    申请日:2007-12-28

    IPC分类号: G11B20/00

    摘要: In an evaluation device and an evaluation system, the level of base power is set higher than that in an optimal recording condition at a set room temperature and lower than the level of bias power. In particular, the level of the base power is set so that the jitter value of a recording mark and a blank, which is formed in a required high temperature environment, during reproduction in the high temperature environment becomes minimum. By evaluating the recording characteristic of a recording mark and a blank formed by irradiation of recording laser light in the form of a pulse train, the recording characteristic of an optical recording medium in high-speed recording in high temperature environment is evaluated.

    摘要翻译: 在评价装置和评价系统中,将基本功率的电平设定为高于设定的室温下的最佳记录条件,并且低于偏置功率的电平。 特别地,基本功率的电平被设置为使得在高温环境中的再现期间在所需高温环境中形成的记录标记和空白的抖动值变得最小。 通过评价通过以脉冲串的形式记录激光形成的记录标记和空白的记录特性,评估在高温环境中的高速记录中的光记录介质的记录特性。

    Optical recording medium including protruding winding parts used as prepits
    8.
    发明授权
    Optical recording medium including protruding winding parts used as prepits 失效
    光记录介质,包括用作预凹坑的突出的绕组部分

    公开(公告)号:US06665260B2

    公开(公告)日:2003-12-16

    申请号:US09899152

    申请日:2001-07-06

    IPC分类号: G11B724

    摘要: In an optical recording medium wherein grooves or lands formed on the supporting substrate are used for the recording tracks, and wherein prepits are also formed, production of the supporting substrate and high density recording are facilitated. This medium comprises a supporting substrate and a recording layer on the substrate wherein the surface of the supporting substrate on which the recording layer is formed is formed with alternating continuous convex portions and continuous concave portions which are substantially parallel to each other. The adjacent continuous convex portions are connected by bridging convex portions extending in transverse direction, and the bridging convex portion has a planar configuration that its width is minimum at or near the center between the adjacent continuous convex portions. The supporting substrate is produced by using a master disk which has a resist layer formed with mother patterns of each of the continuous convex portions, continuous concave portions, and prepits. In the production of the master disk, the resist layer is intermittently irradiated with one exposure beam, and the area irradiated is used as the mother pattern of the continuous concave portions or convex portions, and the area which was not irradiated is used as the mother pattern of the prepits.

    摘要翻译: 在其中形成在支撑基板上的槽或焊盘用于记录轨道的光记录介质中,并且还形成预凹坑,便于生产支撑基板和高密度记录。 该介质包括支撑衬底和衬底上的记录层,其中形成有记录层的支撑衬底的表面形成有彼此基本平行的交替的连续凸部和连续凹部。 相邻的连续凸部通过在横向延伸的桥接凸部连接,并且桥接凸部具有在相邻的连续凸部之间的中心处或其附近的宽度最小的平面构造。 支撑基板通过使用具有形成有连续凸部,连续凹部和预凹坑中的每一个的母体图案的抗蚀剂层的母盘来制造。 在母盘的制造中,用一个曝光束间歇地照射抗蚀剂层,照射的面积用作连续凹部或凸部的母体图案,未照射的区域用作母体 预制图案。

    Information readout method for non mask layer type optical information medium
    9.
    发明授权
    Information readout method for non mask layer type optical information medium 有权
    非掩模层型光信息介质的信息读出方法

    公开(公告)号:US07859968B2

    公开(公告)日:2010-12-28

    申请号:US12352304

    申请日:2009-01-12

    IPC分类号: G11B7/0045

    CPC分类号: G11B7/005 G11B7/1263 G11B7/24

    摘要: 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.

    摘要翻译: 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。

    Information readout method for non mask layer type optical information medium
    10.
    发明授权
    Information readout method for non mask layer type optical information medium 有权
    非掩模层型光信息介质的信息读出方法

    公开(公告)号:US07496019B2

    公开(公告)日:2009-02-24

    申请号:US10125476

    申请日:2002-04-19

    IPC分类号: G11B7/0045

    CPC分类号: G11B7/005 G11B7/1263 G11B7/24

    摘要: 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.

    摘要翻译: 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。