论文标题
集成光子平台中的纳米级磁位钻头的光学读数
Optical Reading of Nanoscale Magnetic Bits in an Integrated Photonic Platform
论文作者
论文摘要
在本文中,我们提出了一个紧凑的集成杂化等离子光子型装置,用于在磁型波导上的磁性赛车轨道上的磁磁性轨道上的纳米级磁力钻头进行光学读数,并在硅平台上的光子波导的顶部进行垂直磁性各向异性。杂化装置是通过将磷化物波导顶部的V形金等离子体纳米antennas耦合来构建的。通过利用局部表面等离子体,我们的混合装置可以在光线衍射极限以外的磁位中检测到磁化状态,并增强极性磁光kerr效应(PMOKE)。我们进一步说明如何通过将PMOKE诱导的极化变化转换为波导模式的强度变化来将混合设备与等离子极化旋转器相结合。根据基于三维有限差分时间域方法的模拟结果,混合设备可以检测到磁性赛车媒体中的靶标状态,至〜100x100 nm2,无论赛车的磁化状态与其他相对强度对比0.5%的磁性状态的磁化状态都大于0.5%。我们认为,我们的混合设备可以是一种有能力的技术,可以将集成的光子学与纳米级的Spintronics连接起来,从而为超快和节能的高级芯片应用铺平了道路。
In this paper, we propose a compact integrated hybrid plasmonic-photonic device for optical reading of nanoscale magnetic bits with perpendicular magnetic anisotropy in a magnetic racetrack on top of a photonic waveguide on the indium phosphide membrane on silicon platform. The hybrid device is constructed by coupling a doublet of V-shaped gold plasmonic nanoantennas on top of the indium phosphide waveguide. By taking advantage of the localized surface plasmons, our hybrid device can enable detection of the magnetization state in magnetic bits beyond the diffraction limit of light and enhance the polar magneto-optical Kerr effect (PMOKE). We further illustrate how combining the hybrid device with a plasmonic polarization rotator provides magneto-optical read-out by transforming the PMOKE-induced polarization change into an intensity variation of the waveguide mode. According to the simulation results based on a three-dimensional finite-difference time-domain method, the hybrid device can detect the magnetization states in targeted bits in a magnetic racetrack medium down to ~ 100x100 nm2, regardless of the magnetization state of the rest of the racetrack with a relative intensity contrast of greater than 0.5% for a ~ 200x100 nm2 magnetic bit. We believe our hybrid device can be an enabling technology that can connect integrated photonics with nanoscale spintronics, paving the way toward ultrafast and energy efficient advanced on-chip applications.