Quantized Orbital Angular Momentums of Dipolar Magnons and Magnetoelectric Cavity Polaritons

IF 2.2 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Annalen der Physik Pub Date : 2024-09-26 DOI:10.1002/andp.202400222
E. O. Kamenetskii
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Abstract

Magnons are viewed as local deviations from the ordered state. Usually, the spin magnetic moment of magnons is considered. In a 3D-confined structure of a magnetic insulator with magnetodipolar mode (MDM) oscillations, an orbital angular momentum (OAM) as well as a spin angular momentum (SAM) can be observed along a static magnetic field. In such a confined structure as quasi-2D ferrite disk, energy levels of MDM oscillations are quantized. Quantum confinement is characterized by a half-integer internal OAM, which is also associated with a circulating energy flow. The observation of MDM resonances in the 3D-confined structure of a magnetic insulator is due to the interaction of two subsystems: ferromagnetic and electric polarization orders. The coupling states of these two concurrent orders, caused by OAMs, are considered as magnetoelectric (ME) states. The near fields of MDM resonators are characterized by simultaneous violation of time reversal and inversion symmetry. This plays a significant role in the problems of strong light-matter interaction regime and quantum atmosphere. The analysis of SAM and OAM in 3D-confined magnetic insulators becomes very important for the realization of ME meta-atomic structures. Current interest lies in considering such artificial systems as subwavelength ME quantum emitters of electromagnetic radiation.

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偶极磁振子和磁电腔极化子的量子化轨道角动量
磁振子被看作是有序态的局部偏差。通常考虑的是磁振子的自旋磁矩。在具有磁偶极子模式(MDM)振荡的三维受限磁绝缘体结构中,沿静态磁场可以观察到轨道角动量(OAM)和自旋角动量(SAM)。在准二维铁氧体圆盘这样的受限结构中,MDM振荡的能级被量子化。量子约束的特征是一个半整数的内部OAM,它也与循环能量流有关。在磁性绝缘体的三维受限结构中观察到MDM共振是由于两个子系统的相互作用:铁磁级和电极化级。由OAMs引起的这两个并发阶的耦合态被认为是磁电态。MDM谐振器的近场具有同时违反时间反转和反演对称性的特点。这在强光-物质相互作用机制和量子大气问题中起着重要的作用。三维受限磁绝缘体中SAM和OAM的分析对于实现ME元原子结构具有重要意义。目前的兴趣在于考虑这种人工系统作为亚波长电磁辐射的量子发射体。
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来源期刊
Annalen der Physik
Annalen der Physik 物理-物理:综合
CiteScore
4.50
自引率
8.30%
发文量
202
审稿时长
3 months
期刊介绍: Annalen der Physik (AdP) is one of the world''s most renowned physics journals with an over 225 years'' tradition of excellence. Based on the fame of seminal papers by Einstein, Planck and many others, the journal is now tuned towards today''s most exciting findings including the annual Nobel Lectures. AdP comprises all areas of physics, with particular emphasis on important, significant and highly relevant results. Topics range from fundamental research to forefront applications including dynamic and interdisciplinary fields. The journal covers theory, simulation and experiment, e.g., but not exclusively, in condensed matter, quantum physics, photonics, materials physics, high energy, gravitation and astrophysics. It welcomes Rapid Research Letters, Original Papers, Review and Feature Articles.
期刊最新文献
(Ann. Phys. 12/2024) Masthead: Ann. Phys. 12/2024 (Ann. Phys. 11/2024) (Ann. Phys. 11/2024) Masthead: Ann. Phys. 11/2024
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