论文标题
出色的点产生了强大的不对称高阶谐波
Exceptional Point Generated Robust Asymmetric High-Order Harmonics
论文作者
论文摘要
我们提出了一个金属 - 硅系统,具有沿波导的长度进行复杂的光势调制的,以进行更高的谐波产生。对于正确的移动场,当非热性的强度与光电位的实际部分相等时,我们提出的系统中与模态场幅度相关的动力学方程式由约旦形式的汉密尔顿描述。最终,这将允许单向较高的频率产生,而波导设计中的几何缺陷始终具有最大值的波导长度。此外,产生的较高谐波模式的相位与基本频率和较高谐波之间的耦合独立。与其他提议的时空调制系统不同,当该系统具有约旦形式的哈密顿量时,基本模式仍然是倒数的,而谐波产生是非循环的。因此,尽管所提出的设备不能用作光学隔离器,但它可用于许多其他设备,例如激光腔,干涉法和全息过程。
We propose a metallic-silicon system with a complex optical potential modulated along the length of the waveguide for a robust higher harmonic generation. For right moving fields when the strength of non-Hermiticity becomes equal to the real part of the optical potential, the dynamical equations associated with modal field amplitudes in our proposed system are described by a Jordan form Hamiltonian. This ultimately will allow for a unidirectional higher frequency generation which always has a maximum value for a specific length of the waveguide irrespective of the geometrical imperfections in the design of the waveguide. Furthermore, the phase of the generated higher harmonic mode becomes independent of the coupling between the fundamental frequency and higher harmonic one. Unlike other proposed spatiotemporal modulated systems when the system has a Jordan form Hamiltonian, the fundamental mode remains reciprocal while the harmonic generation is non-reciprocal. Consequently, while the proposed device cannot be used as an optical isolator it can be used for many other devices such as laser cavities, interferometry, and holographic processes.