百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Kondo cloud finally observed after half-century

 

A physicist from City University of Hong Kong (CityU) plays a major role in the world’s first direct measurement of a Kondo cloud more than 50 years after the initial theory was first expounded.

Dr Ivan Valerievich Borzenets, Assistant Professor in the Department of Physics, has helped to reveal the first experimental evidence of a Kondo cloud.

The Kondo cloud was theorised half a century ago but until now it has not been observed, according to Dr Borzenets, who has worked on the Kondo project as part of an international research team.

This breakthrough in condensed matter physics could contribute to further understanding multiple impurity systems such as high temperature superconductors, he added. High temperature superconductors can be used in a variety of applications such as energy storage system and medical equipment.

The Kondo cloud describes the area around the magnetic impurity where the Kondo effect plays a role. The experiment offers proof that the size, or length, of a Kondo cloud and Kondo temperature are related mathematically. 

This confirmed observation marks an important milestone after more than 55 years since the theory was first postulated by Japanese theoretical physicist Dr Jun Kondo.

“The Kondo temperature is the critical temperature where the Kondo effect starts to play a role,” said Dr Borzenets. In metals, electrical resistance usually falls as the temperature drops. But if there are some magnetic impurities in the metal, resistance will drop at first. When a threshold temperature is reached, resistance will increase as the temperature decreases further.

“We hope the findings can provide insights into the understanding of multiple impurity systems such as Kondo lattices, spin glasses and high transition-temperature superconductors,” explained Dr Borzenets, the lead author of an article titled “Observation of the Kondo screening cloud” published in the latest edition of the prestigious scientific journal Nature.

Following repeated experiments with a device specially developed by the team over a three-year period, the cloud was measured as a few micrometres across. 

It is challenging to isolate and manipulate both a single magnetic impurity and a single cloud. Now, with the instrument developed by the international research team and the application of quantum mechanics, this has been achieved. The impurity was housed in a quantum dot, also referred to as a “conducting island”, that is a just a few hundred nanometres wide. The cloud was confined in a quasi-one dimensional channel (an interferometer), the manipulation of which allowed the team to detect and control the cloud length.

Dr Borzenets was joined on the project by Dr Shim Jeong-min and Professor Sim Heung-sun of the Korea Advanced Institute of Science and Technology; Dr Jason C.H. Chen of the University of Tokyo; Dr Arne Ludwig and Professor Andreas D. Wieck of Ruhr-University Bochum, Germany; and Professor Seigo Tarucha and Dr Michihisa Yamamoto of RIKEN Centre for Emergent Matter Science, Japan.

Notes to editors: 

Filename: Photo_01
Caption: Dr Borzenets plays a major role in the world’s first direct measurement of a Kondo cloud.

Filename: Photo_02
Caption: Schematic illustration of the Kondo cloud detection (graphic design: Dr Shim Jeong-min)


Media enquiries: Eva Choy, Communications and Public Relations Office (Tel: 3442 9325 or 9787 7671)

To download photo -- (Remark: Copyrights belong to CityU. Use of the photo(s) for purposes other than reporting the captioned news story is restricted.)

YOU MAY BE INTERESTED

Back to top
娱乐城注册送现金58| 百家乐官网另类投注法| 博九百家乐的玩法技巧和规则| 百家乐游戏大小| tt娱乐城官方网站| 网络百家乐破| 单机百家乐棋牌| 百家乐官网最佳投注法下载 | 百家乐筹码防伪定制| 百家乐官网作弊工具| 明升信誉| 永利高娱乐场| 大发888娱乐场下载iypuqrd| 威尼斯人娱乐场官网48008| 百家乐筹码素材| 自贡百家乐官网娱乐场开户注册| 百家乐官网论坛代理合作| 百家乐官网如何破解| 金赞娱乐| 皇冠国际现金投注网| 六合彩开奖历史记录| 三国百家乐娱乐城| 百家乐波音独家注册送彩| 金域百家乐的玩法技巧和规则 | 澳门百家乐官网娱乐场开户注册 | 八卦24山| 德州百家乐官网扑克牌| 91百家乐官网的玩法技巧和规则 | 百家乐官网娱乐城优惠| 澳门博彩网站| 澳门赌博经历| 普兰店市| 百家乐官网真人视屏游戏| 百家乐官网秘| 百家乐官网游戏筹码| 至尊百家乐奇热网| 91百家乐的玩法技巧和规则| 博彩网百家乐官网全讯网| 百家乐折叠桌| 百家乐官网看单技术| 澳门百家乐官网游戏说明|