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相关论文: Exploring possible magnetic monopoles-induced magn…

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The close connection of electricity and magnetism is one of the cornerstones of modern physics. This connection plays crucial role from the fundamental point of view and in practical applications, including spintronics and multiferroic…

强关联电子 · 物理学 2013-07-01 D. I. Khomskii

Emergent quasiparticles that arise from the fractionalization of the microscopic degrees of freedom have been one of the central themes in modern condensed matter physics. The notion of magnetic monopoles, freely moving quasiparticles…

强关联电子 · 物理学 2016-06-10 Gia-Wei Chern , Paula Mellado

Electrically charged particles, such as the electron, are ubiquitous. By contrast, no elementary particles with a net magnetic charge have ever been observed, despite intensive and prolonged searches. We pursue an alternative strategy,…

强关联电子 · 物理学 2011-11-08 Claudio Castelnovo , Roderich Moessner , Shivaji L. Sondhi

The notion of magnetic monopoles has puzzled physicists since the introduction of Maxwell's Equations and famously Dirac had hypothesized them in the context of quantum mechanics. While they have proved experimentally elusive as elementary…

Magnetic monopoles are hypothesised elementary particles connected by Dirac strings that behave like infinitely thin solenoids. Despite decades of searches, free magnetic monopoles and their Dirac strings have eluded experimental detection,…

Spin ice magnetic monopoles are fractionalized emergent excitations in a class of frustrated magnets called spin ices. The classical spin ice model has an extensive number of ground state spin configurations, whereas magnetic monopoles can…

强关联电子 · 物理学 2018-07-09 Olga Petrova

While sources of magnetic fields - magnetic monopoles - have so far proven elusive as elementary particles, several scenarios have been proposed recently in condensed matter physics of emergent quasiparticles resembling monopoles. A…

Frustration in magnetic systems is fertile ground for complex behaviour, including unconventional ground states with emergent symmetries, topological properties, and exotic excitations. A canonical example is the emergence of…

An important and continuing theme of modern solid state physics is the realization of exotic excitations in materials (e.g. quasiparticles) that have no analogy (or have not yet been observed) in the actual physical vacuum of free space.…

强关联电子 · 物理学 2016-05-04 LiDong Pan , N. J. Laurita , Kate A. Ross , Edwin Kermarrec , Bruce D. Gaulin , N. P. Armitage

We combine two aspects of magnetic frustration, multiferroicity and emergent quasi-particles in spin liquids, by studying magneto-electric monopoles. Spin ice offers to couple these emergent topological defects to external fields, and to…

强关联电子 · 物理学 2015-06-24 Ludovic D. C. Jaubert , R. Moessner

Magnetic monopole unpairing as a function of external magnetic fields is presented as a fingerprint of this emergent quasiparticles freedom in a two-dimensional artificial spin ice system. Such freedom, required for example for further…

介观与纳米尺度物理 · 物理学 2022-07-14 D. G. Duarte , L. B. de Oliveira , F. S. Nascimento , W. A. Moura-Melo , A. R. Pereira , 1 , C. I. L. de Araujo

Spin ice illustrates many unusual magnetic properties, including zero point entropy, emergent monopoles and a quasi liquid-gas transition. To reveal the quantum spin dynamics that underpin these phenomena is an experimental challenge. Here…

其他凝聚态物理 · 物理学 2013-02-28 L. Bovo , J. A. Bloxsom , D. Prabhakaran , G. Aeppli , S. T. Bramwell

Spin ice systems display a variety of very nontrivial properties, the most striking being the existence in them of magnetic monopoles. Such monopole states can also have nontrivial electric properties: there exist electric dipoles attached…

强关联电子 · 物理学 2021-06-09 D. I. Khomskii

It has been proposed recently \cite{son} that excitations in Spin Ice can be of the form of magnetic monopoles that does not obey the Dirac Quantization Condition. It is also well known \cite{rj} that the above scenario leads to…

强关联电子 · 物理学 2008-01-24 Subir Ghosh

Magnetricity- the magnetic equivalent of electricity- was recently verified experimentally for the first time. Indeed, just as the stream of electric charges produces electric current, emergent magnetic monopoles have been observed to roam…

介观与纳米尺度物理 · 物理学 2014-04-17 R. P. Loreto , L. A. Morais , R. C. Silva , F. S. Nascimento , C. I. L. de Araujo , L. A. S. Mól , W. A. Moura-Melo , A. R. Pereira

Magnetic monopoles have eluded experimental detection since their prediction nearly a century ago by Dirac. Recently it has been shown that classical analogues of these enigmatic particles occur as excitations out of the topological ground…

统计力学 · 物理学 2010-11-23 Ludovic D. C. Jaubert , Peter C. W. Holdsworth

Excitations from a strongly frustrated system, the kagome ice state of the spin ice Dy2Ti2O7 under magnetic fields along a [111] direction, have been studied. They are theoretically proposed to be regarded as magnetic monopoles. Neutron…

无序系统与神经网络 · 物理学 2009-10-15 Hiroaki Kadowaki , Naohiro Doi , Yuji Aoki , Yoshikazu Tabata , Taku J. Sato , Jeffrey W. Lynn , Kazuyuki Matsuhira , Zenji Hiroi

Extensive work on single molecule magnets has identified a fundamental mode of relaxation arising from the nuclear-spin assisted quantum tunnelling of nearly independent and quasi-classical magnetic dipoles. Here we show that nuclear-spin…

强关联电子 · 物理学 2019-03-28 C. Paulsen , S. R. Giblin , E. Lhotel , D. Prabhakaran , K. Matsuhira , G. Balakrishnan , S. T. Bramwell

One of the most remarkable examples of emergent quasi-particles, is that of the "fractionalization" of magnetic dipoles in the low energy configurations of materials known as "spin ice", into free and unconfined magnetic monopoles…

其他凝聚态物理 · 物理学 2015-03-17 Ludovic D. C. Jaubert , Peter C. W. Holdsworth

Artificial spin ice systems are metamaterials composed of interacting nanomagnets arranged on a lattice, exhibiting geometrical frustration and emergent phenomena such as monopole excitations. We explore magnetization dynamics and monopole…

介观与纳米尺度物理 · 物理学 2025-03-28 Julia Frank , Johan van Lierop , Robert L. Stamps
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