论文标题
超出衍射极限的光学自旋波检测
Optical spin-wave detection beyond the diffraction limit
论文作者
论文摘要
由于其低功耗,因此提出了旋转波作为下一代计算设备的信息载体。此外,它们的波动性质允许新颖的计算范例。检测自旋波的常规方法是基于电诱导,限制了最终实现的降尺度和效率,或者是基于光散射,其中最小可检测的自旋波长是由激光的波长设定的。在本文中,我们使用金属光栅有选择地吸收激光光的金属光栅,证明了自旋波超过衍射极限的磁光检测。具体而言,我们使用衍射限制的激光点(在20 nm厚的PY条中尺寸为10 $ $ m $ m)证明了具有700 nm波长的传播自旋波的检测。此外,我们表明这种光栅对自旋波的波长有选择性,从而提供了波形选择性自旋波检测。这应该为光子和镁质的迅速发展领域的整合提供新的途径,并有助于在短波长交换方案中对旋转波的光学检测进行基础研究。
Spin waves are proposed as information carriers for next-generation computing devices because of their low power consumption. Moreover, their wave-like nature allows for novel computing paradigms. Conventional methods to detect spin waves are based either on electrical induction, limiting the downscaling and efficiency complicating eventual implementation, or on light scattering, where the minimum detectable spin-wave wavelength is set by the wavelength of the laser. In this Article we demonstrate magneto-optical detection of spin waves beyond the diffraction limit using a metallic grating that selectively absorbs laser light. Specifically, we demonstrate the detection of propagating spin waves with a wavelength of 700 nm using a diffraction-limited laser spot with a size of 10 $μ$m in 20 nm thick Py strips. Additionally, we show that this grating is selective to the wavelength of the spin wave, providing wavevector-selective spin-wave detection. This should open up new avenues towards the integration of the burgeoning fields of photonics and magnonics, and aid in the optical detection of spin waves in the short-wavelength exchange regime for fundamental research.