论文标题
扭曲的磁频梳子和penrose超赞
Twisted Magnon Frequency Comb and Penrose Superradiance
论文作者
论文摘要
研究了非线性镁 - 涡流相互作用在铁磁纳米风险中的量化。我们表明,圆形几何形状扭曲了旋转波场的螺旋相位脱位,并带有量化的轨道角动量(OAM)。同时,旋转磁岩的汇合和分裂散射从旋转涡流芯(VC)产生的频率梳子由离散和均匀间隔的光谱线组成,称为扭曲的木元频梳(TMFC)。发现TMFC的模式间距等于VC的回旋频率,而相邻光谱线之间的OAM量子数则不同。通过施加垂直于厚的纳米风险平面的磁场,我们观察到锥体涡流状态内的镁质penrose超高率,该磁性巨型超高态模仿了从旋转黑洞散射的波的放大。证明TMFC的高阶模式被显着放大,而低阶的模式被困在VC旋转轨道内,这表现为ErgoreGion。这些结果提出了一种有前途的方法,可以产生大oam扭曲的木蛋白,并大幅度提高木梳的平坦度。
Quantization effects of the nonlinear magnon-vortex interaction in ferromagnetic nanodisks are studied. We show that the circular geometry twists the spin-wave fields with spiral phase dislocations carrying quantized orbital angular momentum (OAM). Meanwhile, the confluence and splitting scattering of twisted magnons off the gyrating vortex core (VC) generates a frequency comb consisting of discrete and equally spaced spectral lines, dubbed as twisted magnon frequency comb (tMFC). It is found that the mode spacing of the tMFC is equal to the gyration frequency of the VC and the OAM quantum numbers between adjacent spectral lines differ by one. By applying a magnetic field perpendicular to the plane of a thick nanodisk, we observe a magnonic Penrose superradiance inside the cone vortex state, which mimics the amplification of waves scattered from a rotating black hole. It is demonstrated that the higher-order modes of tMFC are significantly amplified while the lower-order ones are trapped within the VC gyrating orbit which manifests as the ergoregion. These results suggest a promising way to generate twisted magnons with large OAM and to drastically improve the flatness of the magnon comb.