"/>

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

Aussie-led research taps advanced quantum technology for novel chemical bond simulation
Source: Xinhua   2018-07-25 10:53:23

SYDNEY, July 25 (Xinhua) -- An Australian-led group of researchers on Wednesday said they have demonstrated a ground-breaking way to simulate chemical bonds and reactions via powerful quantum computers, an emerging technology that scientists are racing to apply in fields ranging from medicine to industrial chemistry.

"Even the largest supercomputers are struggling to model accurately anything but the most basic chemistry. Quantum computers simulating nature, however, unlock a whole new way of understanding matter. They will provide us with a new tool to solve problems in materials science, medicine and industrial chemistry using simulations," University of Sydney physicist Dr Cornelius Hempel, who led the team of international researchers, said in a statement on Wednesday.

Quantum computers, using technology based on quantum mechanics or fundamental physics at the atomic and subatomic level, are considered to be significantly more powerful in computing power than their common counterparts.

While the "moving parts" of anything but the most-simple chemical processes are beyond the capacity of the biggest and fastest supercomputers, the quantum computers can be harnessed to plug those gaps. Most experts now agree that quantum chemistry, the science of understanding the complicated bonds and reactions of molecules under the quantum mechanics framework, is going to be one of the first "killer apps" of the emergent technology, said the researchers. Their work has been published in the Physical Review X scientific journal.

The findings can have significant applications for industries including the production of fertilizers, development of organic solar cells and design of personalized medicines, they said.

"Quantum chemistry is an example where the advantages of a quantum computer will very soon become apparent in practical applications," said research paper co-author Professor Rainer Blatt from the Institute for Quantum Optics and Quantum Information in Innsbruck, Austria.

Editor: Yurou
Related News
Xinhuanet

Aussie-led research taps advanced quantum technology for novel chemical bond simulation

Source: Xinhua 2018-07-25 10:53:23
[Editor: huaxia]

SYDNEY, July 25 (Xinhua) -- An Australian-led group of researchers on Wednesday said they have demonstrated a ground-breaking way to simulate chemical bonds and reactions via powerful quantum computers, an emerging technology that scientists are racing to apply in fields ranging from medicine to industrial chemistry.

"Even the largest supercomputers are struggling to model accurately anything but the most basic chemistry. Quantum computers simulating nature, however, unlock a whole new way of understanding matter. They will provide us with a new tool to solve problems in materials science, medicine and industrial chemistry using simulations," University of Sydney physicist Dr Cornelius Hempel, who led the team of international researchers, said in a statement on Wednesday.

Quantum computers, using technology based on quantum mechanics or fundamental physics at the atomic and subatomic level, are considered to be significantly more powerful in computing power than their common counterparts.

While the "moving parts" of anything but the most-simple chemical processes are beyond the capacity of the biggest and fastest supercomputers, the quantum computers can be harnessed to plug those gaps. Most experts now agree that quantum chemistry, the science of understanding the complicated bonds and reactions of molecules under the quantum mechanics framework, is going to be one of the first "killer apps" of the emergent technology, said the researchers. Their work has been published in the Physical Review X scientific journal.

The findings can have significant applications for industries including the production of fertilizers, development of organic solar cells and design of personalized medicines, they said.

"Quantum chemistry is an example where the advantages of a quantum computer will very soon become apparent in practical applications," said research paper co-author Professor Rainer Blatt from the Institute for Quantum Optics and Quantum Information in Innsbruck, Austria.

[Editor: huaxia]
010020070750000000000000011100001373469981
主站蜘蛛池模板: 南木林县| 博客| 察隅县| 环江| 平舆县| 葫芦岛市| 钦州市| 樟树市| 紫阳县| 遵义县| 乌鲁木齐县| 汽车| 乳源| 青铜峡市| 河源市| 读书| 鲁山县| 怀仁县| 偏关县| 交口县| 车致| 宣恩县| 阿拉善左旗| 甘德县| 永清县| 社会| 屏东县| 岳阳县| 永福县| 安庆市| 荃湾区| 垣曲县| 庐江县| 光泽县| 庄河市| 乐都县| 宕昌县| 东宁县| 伊宁县| 化德县| 新沂市|