论文标题

磁电材料中的非肾脏第二次谐波生成

Nonreciprocal second harmonic generation in a magnetoelectric material

论文作者

Toyoda, Shingo, Fiebig, Manfred, Arima, Taka-hisa, Tokura, Yoshinori, Ogawa, Naoki

论文摘要

在光子电路和新兴的量子技术中,仅允许光传播的非跨型设备是必不可少的。但是,由于磁光相互作用的总体弱点,当代光学隔离器和循环器需要大尺寸或强磁场,这阻碍了它们整合到光子电路中。针对更强的磁光接头,一种有希望的方法是利用非线性光学过程。在这里,我们证明了Cub2O4中的非肾上腺磁电磁性第二次谐波(SHG)。在仅10吨的磁场逆转中,SHG的传播变化几乎100%。观察到的非交流性是由于磁性 - 偶极和电偶极型SHG之间的干扰而产生的。即使前者通常比后者小,但发现共同增强的磁极转换具有可比的幅度与非谐波的电 - 偶极转移,从而导致近乎完美的非处于非处率性。这种机制可以构成多铁质中的非肾脏的基本基础之一,该机制可转移到众多磁电系统中,以实现未来的非逆向和非线性光学设备。

Nonreciprocal devices that allow the light propagation in only one direction are indispensable in photonic circuits and emerging quantum technologies. Contemporary optical isolators and circulators, however, require large size or strong magnetic fields because of the general weakness of magnetic light-matter interactions, which hinders their integration into photonic circuits. Aiming at stronger magneto-optical couplings, a promising approach is to utilize nonlinear optical processes. Here, we demonstrate nonreciprocal magnetoelectric second harmonic generation (SHG) in CuB2O4. SHG transmission changes by almost 100% in a magnetic-field reversal of just 10 mT. The observed nonreciprocity results from an interference between the magnetic-dipole- and electric-dipole-type SHG. Even though the former is usually notoriously smaller than the latter, it is found that a resonantly enhanced magnetic-dipole-transition has a comparable amplitude as non-resonant electric-dipole-transition, leading to the near-perfect nonreciprocity. This mechanism could form one of the fundamental bases of nonreciprocity in multiferroics, which is transferable to a plethora of magnetoelectric systems to realize future nonreciprocal and nonlinear-optical devices.

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