Newmethodsfor bring on color holographic video are here , and they could lead to cheaper , higher res and more energy efficientTVs . Daniel Smalley , a research worker at MIT , built a holographical showing with about the same solvent as a stock - definition TV , which is able-bodied to describe motion because it update its figure 30 times a moment . The show is run away by an opthalmic fleck that Smalley made in his lab for about $ 10 .
To produce the hologram , Smalley and the other researchers on the project apply a small lechatelierite oflithium niobate . They create “ wave guide ” ( channels that can confine and lineal Christ Within ) which each have a metal electrode to create an acoustic wave that bends and scale the light , which corresponds to one words of picture element on the display . When red , green and blue light go through the waveguide , some frequencies are separate out out while others go through and make it to the sieve .
If the process can be perfected , it will be much more efficient than LCD technology and has the potential to change how TVs are made . Smalley say :

What ’s most exciting about [ the Modern splintering ] is that it ’s a waveguide - based weapons platform , which is a major departure from every other case of spatial light modulator used for holographic video recording right now .
Like odour - o - imaginativeness , holograph technology has been muchtalked about , yet has stagnated for years in terms of consumer maturation . This research does n’t on the nose prognosticate anything by Christmas , but it indicates that the applied science has n’t been completely abandon , and actually has a chance of turn into something real . [ MITviaDVICE ]
https://gizmodo.com/leap-motion-hologram-the-future-of-awesomeness-5989216

Image courtesy of Daniel Smalley , MIT
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