24小时热门版块排行榜    

北京石油化工学院2026年研究生招生接收调剂公告
查看: 971  |  回复: 7
【奖励】 本帖被评价4次,作者wuli8增加金币 4
当前主题已经存档。

[资源] 【转帖】Magnetic Monopoles Detected In A Real Magnet For The First Time


ScienceDaily (Sep. 4, 2009) — Researchers from the Helmholtz-Zentrum Berlin für Materialien und Energie have, in cooperation with colleagues from Dresden, St. Andrews, La Plata and Oxford, for the first time observed magnetic monopoles and how they emerge in a real material.



Results of their research are being published in the journal Science.

Magnetic monopoles are hypothetical particles proposed by physicists that carry a single magnetic pole, either a magnetic north pole or south pole. In the material world this is quite exceptional because magnetic particles are usually observed as dipoles, north and south combined. However there are several theories that predict the existence of monopoles. Among others, in 1931 the physicist Paul Dirac was led by his calculations to the conclusion that magnetic monopoles can exist at the end of tubes – called Dirac strings – that carry magnetic field. Until now they have remained undetected.

Jonathan Morris, Alan Tennant and colleagues (HZB) undertook a neutron scattering experiment at the Berlin research reactor. The material under investigation was a single crystal of Dysprosium Titanate. This material crystallises in a quite remarkable geometry, the so called pyrochlore-lattice. With the help of neutron scattering Morris and Tennant show that the magnetic moments inside the material had reorganised into so-called 'spin-spaghetti'. This name comes from the ordering of the dipoles themselves, such that a network of contorted tubes (strings) develops, through which magnetic flux is transported. These can be made visible by their interaction with the neutrons which themselves carry a magnetic moment. Thus the neutrons scatter as a reciprocal representation of the Strings.

During the neutron scattering measurements a magnetic field was applied to the crystal by the researchers. With this field they could influence the symmetry and orientation of the strings. Thereby it was possible to reduce the density of the string networks and promote the monopole dissociation. As a result, at temperatures from 0.6 to 2 Kelvin, the strings are visible and have magnetic monopoles at their ends.

The signature of a gas made up by these monopoles has also been observed in heat capacity measured by Bastian Klemke (HZB). Providing further confirmation of the existence of monopoles and showing that they interact in the same way as electric charges.

In this work the researchers, for the first time, attest that monopoles exist as emergent states of matter, i.e. they emerge from special arrangements of dipoles and are completely different from the constituents of the material. However, alongside this fundamental knowledge, Jonathan Morris explains the further meaning of the results: "We are writing about new, fundamental properties of matter. These properties are generally valid for materials with the same topology, that is for magnetic moments on the pyrochlore lattice. For the development of new technologies this can have big implications. Above all it signifies the first time fractionalisation in three dimensions is observed."
--------------------------------------------------------------------------------

Journal reference:

D.J.P. Morris, D.A. Tennant, S.A. Grigera, B. Klemke, C. Castelnovo, R. Moessner, C. Czter-nasty, M. Meissner, K.C. Rule, J.-U. Hoffmann, K. Kiefer, S. Gerischer, D. Slobinsky, and R.S. Perry. Dirac Strings and Magnetic Monopoles in Spin Ice Dy2Ti2O7. Science, 2009; DOI: 10.1126/science.1178868
Adapted from materials provided by Helmholtz Association of German Research Centres, via EurekAlert!, a service of AAAS.




http://www.sciencedaily.com/releases/2009/09/090903163725.htm

[ Last edited by wuli8 on 2009-9-8 at 13:40 ]
回复此楼
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

wuguocheng

荣誉版主 (职业作家)


★★★★★ 五星级,优秀推荐

Accurately. it's amazing.
2楼2009-09-08 13:55:22
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

wuguocheng

荣誉版主 (职业作家)


It will be a major breakthrough in humen history.
3楼2009-09-08 14:07:02
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

yello

金虫 (正式写手)


★★★★★ 五星级,优秀推荐

ms不是真正的 magnetic monopole  不过还是很牛
4楼2009-09-08 16:44:54
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

pfzhangphy

金虫 (小有名气)


★★★★★ 五星级,优秀推荐

好像物理所有人做磁单极的,不过是理论上推导的动量空间的磁单极!具体细节还是不清楚!
5楼2009-09-13 07:49:32
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

greeeed

新虫 (小有名气)


这个可能跟传统意义的磁单及还是有区别的吧
6楼2009-09-13 10:07:37
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖

★★★★★ 五星级,优秀推荐

★★★★★★ 五星级
7楼2009-09-13 17:56:48
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
引用回帖:
Originally posted by pfzhangphy at 2009-9-13 07:49:
好像物理所有人做磁单极的,不过是理论上推导的动量空间的磁单极!具体细节还是不清楚!

是方忠教授,发在science还是nature上.
他还自己编写了Bstate 北京第一性原理计算软件包.
8楼2009-09-13 18:48:40
已阅   回复此楼   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 wuli8 的主题更新
☆ 无星级 ★ 一星级 ★★★ 三星级 ★★★★★ 五星级
普通表情 高级回复 (可上传附件)
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 南京大学化学调剂 +6 景随风 2026-03-29 9/450 2026-03-29 15:27 by 唐沐儿
[考研] 309求调剂 +7 谁不是少年 2026-03-29 7/350 2026-03-29 13:17 by mumin1990
[考研] 调剂考研 +3 王杰一 2026-03-29 3/150 2026-03-29 08:09 by fmesaito
[考研] 一志愿哈尔滨工业大学材料与化工方向336分 +9 辰沐5211314 2026-03-26 9/450 2026-03-29 01:12 by 我是小康
[考研] 081200-11408-276学硕求调剂 +6 崔wj 2026-03-26 6/300 2026-03-29 01:11 by hanserlol
[考研] 343求调剂 +5 爱羁绊 2026-03-28 5/250 2026-03-28 20:53 by 唐沐儿
[考研] 一志愿北京工业大学,324分求调剂 +4 零八# 2026-03-28 4/200 2026-03-28 15:01 by 17865157980
[考研] 322求调剂 +5 旧吢 2026-03-24 5/250 2026-03-28 13:26 by Iveryant
[考研] 0703一志愿9,初试成绩:338,四六级已过,有科研经历,求调剂! +4 Zuhui0306 2026-03-25 4/200 2026-03-28 13:07 by 唐沐儿
[考研] 311求调剂 +3 希望上岸阿小杨 2026-03-23 3/150 2026-03-28 07:57 by 热情沙漠
[考研] 308求调剂 +7 墨墨漠 2026-03-27 7/350 2026-03-28 07:43 by 热情沙漠
[考研] 求调剂推荐 材料 304 +15 荷包蛋hyj 2026-03-26 15/750 2026-03-28 04:13 by fmesaito
[考研] 307求调剂 +8 超级伊昂大王 2026-03-24 9/450 2026-03-27 15:34 by 超级伊昂大王
[考研] 材料学硕,求调剂 6+5 糖葫芦888ll 2026-03-22 10/500 2026-03-27 08:18 by hypershenger
[考研] 321求调剂 +6 wasdssaa 2026-03-26 6/300 2026-03-26 20:57 by sanrepian
[考研] 0703化学求调剂 +3 丹青奶盖 2026-03-26 5/250 2026-03-26 20:11 by macy2011
[考研] 材料调剂 +3 iwinso 2026-03-23 3/150 2026-03-25 11:29 by greychen00
[考研] 求调剂 +6 研研,接电话 2026-03-24 7/350 2026-03-24 17:01 by barlinike
[考研] 085404电子信息284分求调剂 +4 13659058978 2026-03-24 4/200 2026-03-24 12:15 by syl20081243
[考研] 一志愿国科过程所081700,274求调剂 +3 三水研0水立方 2026-03-23 3/150 2026-03-23 23:11 by MajorWen
信息提示
请填处理意见