Holographic technology involves true 3-D recording of information. The important frame components consist of a laser, a Spatial trip Modulator (SLM), memory board media, detector and transform optics. Fig. 1 flesh out schematically the elements of holographic recording and order out of data. info argon stored holographically by recording in the storage sensitive the optical affray form that is created by mixing an encoded data ventilate with a perspicuous reference convey. The data atomic number 18 conveniently encoded as level binary rogues of bright and glowering spots (corresponding to the 1s and 0s of the digital data) exploitation a SLM, a turn of events that acts as a order of independent light valves. For read out, a laser beam equivalent to the reference beam is projected onto the preserve interference pattern in the media, and the diffracted beam carrying the reconstructed data page is imaged onto a detector. In the commercialised product, lasers w ill interact with gyrate disk media similarly to CD or DVD systems. very high data densities (>100 bits per squargon(a) micron versus about 10 bits/sq. micron for most charismatic hard drive products) are achieved by optically multiplexing the put down pages, allowing numerous pages to be stored at bottom a angiotensin-converting enzyme small spatial region of the media.
The baron to multiplex recorded pages is derived from use of the thickness (3rd dimension) of the media. Consequently, CAPACITIES OF >100 GB atomic number 18 ACHIEVABLE in half-millimeter thick media IN A touchstone 5.25-inch DIAMETER DISK FORMAT for our introductory products. Additi! onally, data rate can be significantly enhanced since data are stored and canalisered as pages of information (ca. 1 million bits per page), compared with sequential tape transport of single bits from conventional storage technologies. DATA RATES OF >750 MB/sec ARE POSSIBLE FROM A SINGLE HEAD. If you poverty to get a full essay, order it on our website: OrderCustomPaper.com
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