韩国三级视频-日韩操-视频一二区-久草欧美-五月天婷婷丁香花-动漫美女靠逼-韩国一区二区三区视频-美女扒开内裤让男人桶-亚洲AV无码精品一区二区三区-无码内射中文字幕岛国片-亚洲成色网

Latest light beam technology eyes 100-times-faster internet speeds: Aussie researchers

Source: Xinhua| 2018-10-24 17:11:29|Editor: xuxin
Video PlayerClose

SYDNEY, Oct. 24 (Xinhua) -- Advanced technology harnessing unique features of light beams could carry more data and process it more quickly, pointing to internet speeds that are 100 times faster than what connections now allow, according to a latest Australian-linked research.

Current broadband fiber optics carry information on pulses of light but the way the light is encoded at one end and processed at the other affects data speeds. The advanced nanophotonic devices being developed by researchers can read a special form of "twisted" light and forms the missing key to unlocking super-fast, ultra-broadband communications, RMIT University researcher Haoran Ren said in a statement on Wednesday.

"Present-day optical communications are heading towards a 'capacity crunch' as they fail to keep up with the ever-increasing demands of Big Data," said Ren, who co-led the report of the findings.

"What we've managed to do is accurately transmit data via light at its highest capacity in a way that will allow us to massively increase our bandwidth."

Current state-of-the-art fiber-optic communications, like those used in Australia's National Broadband Network, tap a fraction of light's actual capacity by carrying data on the color spectrum.

New broadband technologies being developed use the oscillation or shape of light waves to encode data, increasing bandwidth by also making use of light aspects that cannot be easily detected, according to the university.

The latest devices help carry data on light waves that have been "twisted" into a "spiral" to further increase their capacity, it said.

The new technology, reported in scientific journal Nature Communications, can also be used to receive advanced quantum information, with applications for a wide range of cutting-edge communications and computing research, said the university's Professor Min Gu.

"Our nano-electronic device will unlock the full potential of twisted light for future optical and quantum communications," said Gu.

TOP STORIES
EDITOR’S CHOICE
MOST VIEWED
EXPLORE XINHUANET
010020070750000000000000011100001375551741
主站蜘蛛池模板: 专栏| 万源市| 鄂托克旗| 汽车| 太仓市| 龙游县| 成安县| 丰原市| 治多县| 区。| 吴川市| 阿尔山市| 云林县| 斗六市| 城固县| 永善县| 永善县| 怀仁县| 涞水县| 静安区| 张家川| 东台市| 册亨县| 南开区| 福海县| 双峰县| 青岛市| 泾阳县| 米易县| 友谊县| 昔阳县| 莎车县| 五大连池市| 沂南县| 定兴县| 建阳市| 宜州市| 胶州市| 高安市| 浦县| 田阳县|