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Challenges and opportunities for optical storage

机译:光存储的挑战与机遇

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Optical technique for data storage was driven from the challenges to achieve data storage performance required by the user. The first attempt to address the recording density improvement over HDD using magneto-optic technology started over thirty years ago. Subsequent efforts to develop 15", 12" and 5 1/4" WORM disc drives met with limited success. Advances in semiconductor lasers, lithography, and auto focusing and tracking techniques finally allow the development of the Compact Disc to answer the call for improvement in audio recording technology and data distribution in mid to late 1980. Recordable and erasable technology then followed with the introduction of CD-R, CD-RW and MO drives and media. By early 1990, advances in high density recording with the use of shorter wavelength lasers, larger n.a. lenses, improved lithographic and data compression techniques, allows the development of 4.7 GB DVD drives and discs to answer the challenge for recording 2-hour high quality movies on a CD size disc. Recordable and erasable DVD became available in 2000, and Dual Layer DVD was introduced last year . With the advent of HDTV and movie in recent years, Storage of 25 GB data in a DVD disc is needed. Blue-ray and HD-DVD are the leading technologies to answer this challenge. Looking to the future, optical storage areal density of one to two orders of magnitude improvement will be required to compete with HDD which is now reaching 133 Gb/in~2. In addition, high data transfer rate of 1Gb/s, data security, copy protection, ease of use, cost and standards issues sums up the monumental challenges facing the optical recording industry in the years to come. Some of the leading technologies, such as multi-layer, new encoding schemes, volume recording, near-field optics, micro-optics, domain expansion, UV laser, holographic storage, could provide the answers. Meeting these challenges, optical storage could become the dominant recording technology to satisfy the data storage needs for the convergent world of consumer electronics, information, and communication.
机译:数据存储的光学技术是从实现用户所需的数据存储性能的挑战出发而推动的。使用磁光技术解决HDD记录密度提高的首次尝试始于三十多年前。随后开发15“,12”和5 1/4“ WORM磁盘驱动器的努力取得了有限的成功。半导体激光器,光刻技术以及自动聚焦和跟踪技术的进步最终使紧凑型光盘的开发满足了改进的要求在1980年中期至后期进行了音频记录技术和数据分配方面的研究,随后随着CD-R,CD-RW和MO驱动器和介质的出现,出现了可记录和可擦除的技术,到1990年初,使用更短的记录技术实现了高密度记录的发展。波长激光器,更大的na透镜,改进的光刻和数据压缩技术,允许开发4.7 GB DVD驱动器和光盘,以应对在CD大小的光盘上录制2小时高质量电影的挑战。可录制和可擦除DVD于2000年问世双层DVD是在去年推出的,随着近年来高清电视和电影的出现,需要在DVD光盘中存储25 GB数据,蓝光和HD-DVD是领先的技术应对这一挑战。展望未来,要与现在达到133 Gb / in〜2的HDD竞争,就需要将光存储的面密度提高一到两个数量级。此外,1Gb / s的高数据传输速率,数据安全性,复制保护,易用性,成本和标准问题,是未来几年光学记录行业面临的巨大挑战。多层,新的编码方案,体积记录,近场光学,微光学,域扩展,UV激光,全息存储等一些领先技术可以提供答案。面对这些挑战,光存储将成为满足消费电子,信息和通信融合世界中数据存储需求的主导记录技术。

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