摘要:
Increase of jitter in a phase change optical recording medium is suppressed with no extreme decrease in the crystallization speed of the recording layer when the medium is overwritten at a high linear velocity. In addition, in a disk-shaped medium operated at a constant angular velocity, the overwriting is accomplished with the increase of jitter suppressed over the entire area of the medium. Provided is an optical recording method for recording a disk-shaped optical recording medium having a phase change recording layer which is rotated at a constant angular velocity, wherein amorphous recorded marks are formed in the recording layer. In this method, the minimum recorded mark is formed such that W L /M L incrementally or gradually decreases from the radially inner side to the radially outer side of the optical recording medium, when the minimum signal has a length of S L , and when the minimum recorded mark corresponding to said minimum signal has its maximum width of M W , E W is 0.1 M W ; the position on the leading edge side of the recorded mark at the width of E W is designated effective leading edge; and the position on the trailing edge side of the recorded mark at the width of E W is designated effective trailing edge; the distance between the effective leading edge and the effective trailing edge is designated effective length M L ; and the distance between the effective leading edge and the position at which the width starts to decrease on the trailing edge side is designated W L .
摘要:
When information is recorded in an optical recording medium having a recording layer by irradiating a laser beam thereto through an optical system, the recording is carried out under the conditions: λ/NA ≤ 680 nm and n·Tw ≤ 22 ns wherein the laser beam has a wavelength λ, the optical system includes an objective lens having a numerical aperture NA, the window margin is Tw, and a signal length corresponding to the shortest recorded mark is n·Tw. The method provides for a high transfer rate and minimizes the jitter.
摘要:
When information is recorded in an optical recording medium having a recording layer by irradiating a laser beam thereto through an optical system, the recording is carried out under the conditions: λ/NA ≤ 680 nm and n·Tw ≤ 22 ns wherein the laser beam has a wavelength λ, the optical system includes an objective lens having a numerical aperture NA, the window margin is Tw, and a signal length corresponding to the shortest recorded mark is n·Tw. The method provides for a high transfer rate and minimizes the jitter.
摘要:
Increase of jitter in a phase change optical recording medium is suppressed with no extreme decrease in the crystallization speed of the recording layer when the medium is overwritten at a high linear velocity. In addition, in a disk-shaped medium operated at a constant angular velocity, the overwriting is accomplished with the increase of jitter suppressed over the entire area of the medium. Provided is an optical recording method for recording a disk-shaped optical recording medium having a phase change recording layer which is rotated at a constant angular velocity, wherein amorphous recorded marks are formed in the recording layer. In this method, the minimum recorded mark is formed such that W L /M L incrementally or gradually decreases from the radially inner side to the radially outer side of the optical recording medium, when the minimum signal has a length of S L , and when the minimum recorded mark corresponding to said minimum signal has its maximum width of M W , E W is 0.1 M W ; the position on the leading edge side of the recorded mark at the width of E W is designated effective leading edge; and the position on the trailing edge side of the recorded mark at the width of E W is designated effective trailing edge; the distance between the effective leading edge and the effective trailing edge is designated effective length M L ; and the distance between the effective leading edge and the position at which the width starts to decrease on the trailing edge side is designated W L .
摘要:
In an optical information medium having an information bearing surface (21) having projections and depressions and/or capable of forming recorded marks, a functional layer (10) is added. The information borne on the information bearing surface can be read when reading light of a wavelength longer than 4NA·P L wherein P L is the minimum size of the projections and depressions or recorded marks and NA is the numerical aperture of a reading optical system is irradiated to the information bearing surface constructed by the functional layer or to the information bearing surface through the functional layer or to the functional layer through the information bearing surface. The intensity of reflected light from the functional layer changes in linear proportion to a change in the power of the reading light. The medium enables reading at a high resolution beyond the diffraction limit.