Mode-dependent magnonic noise

IF 8.6 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Npg Asia Materials Pub Date : 2024-01-19 DOI:10.1038/s41427-023-00522-8
Ryo Furukawa, Shoki Nezu, Takuro Eguchi, Koji Sekiguchi
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Abstract

The performance of magnonic devices such as converters, switches, and multiplexers greatly depends on magnonic noise. While a peculiar discrete magnonic noise has been previously reported, the sources of underlying magnon dynamics occurring in high-magnon density conditions have not been clarified. Here, zero-span measurements of the spectrum analyzer were recorded to accurately detect magnonic noise as a fluctuation of the spin-wave amplitude. The results of low-frequency magnonic noise demonstrated a spin-wave mode dependency, indicating the existence of a peculiar magnon surface state. Furthermore, the energy thresholds of four-magnon scattering and autooscillation were determined using magnonic white noise. The noise data obtained in this study can help promote theoretical and experimental research on magnons.

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取决于模式的磁噪声
磁子设备(如转换器、开关和多路复用器)的性能在很大程度上取决于磁子噪声。虽然以前曾报道过一种奇特的离散磁子噪声,但在高磁子密度条件下发生的潜在磁子动力学的来源尚未明确。在此,我们记录了频谱分析仪的零跨度测量,以准确检测作为自旋波振幅波动的磁子噪声。低频磁子噪声的结果显示了自旋波模式依赖性,表明存在一种奇特的磁子表面态。此外,还利用磁子白噪声确定了四磁子散射和自振的能量阈值。本研究获得的噪声数据有助于促进有关磁子的理论和实验研究。
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来源期刊
Npg Asia Materials
Npg Asia Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
15.40
自引率
1.00%
发文量
87
审稿时长
2 months
期刊介绍: NPG Asia Materials is an open access, international journal that publishes peer-reviewed review and primary research articles in the field of materials sciences. The journal has a global outlook and reach, with a base in the Asia-Pacific region to reflect the significant and growing output of materials research from this area. The target audience for NPG Asia Materials is scientists and researchers involved in materials research, covering a wide range of disciplines including physical and chemical sciences, biotechnology, and nanotechnology. The journal particularly welcomes high-quality articles from rapidly advancing areas that bridge the gap between materials science and engineering, as well as the classical disciplines of physics, chemistry, and biology. NPG Asia Materials is abstracted/indexed in Journal Citation Reports/Science Edition Web of Knowledge, Google Scholar, Chemical Abstract Services, Scopus, Ulrichsweb (ProQuest), and Scirus.
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