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铁磁体中的磁振子 Casimir 效应。

Magnonic Casimir Effect in Ferrimagnets.

机构信息

Advanced Science Research Center, Japan Atomic Energy Agency, Tokai, Ibaraki 319-1195, Japan.

出版信息

Phys Rev Lett. 2023 Mar 3;130(9):096702. doi: 10.1103/PhysRevLett.130.096702.

Abstract

Quantum fluctuations are the key concepts of quantum mechanics. Quantum fluctuations of quantum fields induce a zero-point energy shift under spatial boundary conditions. This quantum phenomenon, called the Casimir effect, has been attracting much attention beyond the hierarchy of energy scales, ranging from elementary particle physics to condensed matter physics together with photonics. However, the application of the Casimir effect to spintronics has not yet been investigated enough, particularly to ferrimagnetic thin films, although yttrium iron garnet (YIG) is one of the best platforms for spintronics. Here we fill this gap. Using the lattice field theory, we investigate the Casimir effect induced by quantum fields for magnons in insulating magnets and find that the magnonic Casimir effect can arise not only in antiferromagnets but also in ferrimagnets including YIG thin films. Our result suggests that YIG, the key ingredient of magnon-based spintronics, can serve also as a promising platform for manipulating and utilizing Casimir effects, called Casimir engineering. Microfabrication technology can control the thickness of thin films and realize the manipulation of the magnonic Casimir effect. Thus, we pave the way for magnonic Casimir engineering.

摘要

量子涨落是量子力学的关键概念。量子场的量子涨落在空间边界条件下会引起零点能移动。这种量子现象称为卡西米尔效应,它不仅在能量尺度的层次上引起了关注,从基本粒子物理到凝聚态物理和光子学,而且在自旋电子学中也引起了关注。然而,卡西米尔效应在自旋电子学中的应用还没有得到足够的研究,特别是对于铁磁薄膜,尽管钇铁石榴石(YIG)是自旋电子学的最佳平台之一。在这里,我们填补了这一空白。我们使用晶格场论研究了绝缘磁体中磁子的量子场引起的卡西米尔效应,发现磁子卡西米尔效应不仅可以在反铁磁体中出现,而且可以在包括 YIG 薄膜在内的铁磁体中出现。我们的结果表明,作为基于磁子的自旋电子学的关键成分的 YIG 也可以作为操纵和利用卡西米尔效应的有前途的平台,称为卡西米尔工程。微制造技术可以控制薄膜的厚度并实现对磁子卡西米尔效应的操纵。因此,我们为磁子卡西米尔工程铺平了道路。

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