男友太凶猛1v1高h,大地资源在线资源免费观看 ,人妻少妇精品视频二区,极度sm残忍bdsm变态

USEUROPEAFRICAASIA 中文雙語Fran?ais
China
Home / China / Innovation

'Angel particle' discovery called milestone

By Zhang Zhihao | China Daily | Updated: 2017-07-22 05:29

A Chinese-American scientist and his team discovered a particle that can be both matter and antimatter, which can potentially lead to more advanced quantum computers.

The particle, called Majorana fermion, is named after Italian theoretical physicist Ettore Majorana, who first predicted its existence in 1937. Typically, when a particle — the basic building block of matter — and an antiparticle — its identical twin but with an opposite charge — collide, they will annihilate each other, releasing a burst of energy.

The Majorana fermion, however, is a strange exception that can simultaneously exist both as a particle and as its own antiparticle. This hypothesis has fascinated and puzzled scientists ever since.

The latest discovery "concludes one of the most intensive searches in fundamental physics, which spanned exactly 80 years," said Zhang Shoucheng, a Stanford University physicist and a foreign academician of the Chinese Academy of Sciences, who proposed the experiment plan.

The research team, led by Associate Professor Jing Xia of the University of California, Irvine, and UCLA Professor Kang Wang, dubbed the fermion the "angel particle" in reference to Dan Brown's 2000 thriller novel Angels & Demons, which involves a bomb made from a combination of particle and antiparticle.

"Our team predicted exactly where to find the Majorana fermion and what to look for as its 'smoking gun' experimental signature," Zhang said in a news release from Stanford University. The team published its findings on Thursday in Science magazine.

In the future, Majorana fermions could be used to build quantum computers that are more resilient to environmental disturbance, which has been a major obstacle in their development.

Unlike conventional computers that store data in 1 or 0 binary bits, quantum computers use qubits — subatomic particles that can be both 1 and 0 at the same time.

Since each Majorana fermion can behave like half of a subatomic particle, a single qubit could theoretically be stored in two widely separated fermions, decreasing the chance of both fermions being disturbed and losing their data, Zhang said.

This could lead to new and more stable quantum computers, he said. However, research on the famous fermion is largely theoretical, and practical applications are still decades away.

Frank Wilczek, a theoretical physicist and Nobel laureate at the Massachusetts Institute of Technology, said in an evaluation of the experiment: "It's not fundamentally surprising, because physicists have thought for a long time that Majorana fermions could arise out of the types of materials used in this experiment.

"But they put together several elements that had never been put together before, and engineering things so this new kind of quantum particle can be observed in a clean, robust way is a real milestone."

Stanford physicist Thomas Devereaux called Zhang's research a "landmark" in the field of condensed matter physics.

Editor's picks
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
主站蜘蛛池模板: 英德市| 祥云县| 龙山县| 东源县| 当涂县| 巨鹿县| 兴安盟| 石棉县| 沛县| 富民县| 佳木斯市| 晋宁县| 三江| 达州市| 临城县| 江陵县| 台北市| 星子县| 龙里县| 依安县| 岳阳市| 定结县| 抚宁县| 福安市| 峨山| 高淳县| 嘉义市| 林周县| 芷江| 浮山县| 长兴县| 曲阜市| 息烽县| 临泽县| 张家口市| 磐石市| 五河县| 武邑县| 阿克陶县| 浑源县| 黔西县|