异常点产生鲁棒的非对称高次谐波

Gui-Lei Zhu, A. Targholizadeh, Xin-You Lu, C. Yuce, H. T. D. O. Physics, Astronomy, University of Texas Rio Grande Valley, Edinburg, Texas 78539, Usa, S. O. Physics, Huazhong University of Science, Technology, Wuhan 430074, China, Department of Applied Physics, Eskisehir Technical University, Eskisehir, Turkey
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引用次数: 1

摘要

我们提出了一种金属硅系统,具有沿波导长度调制的复杂光势,用于鲁棒的高谐波产生。对于右移场,当非厄米强度等于光势的实部时,我们提出的系统中与模态场振幅相关的动力学方程用约当形式哈密顿量来描述。这最终将允许单向高频产生,无论波导设计中的几何缺陷如何,对于特定长度的波导总是具有最大值。此外,所产生的高次谐波模的相位与基频和高次谐波之间的耦合无关。与其他提出的时空调制系统不同,当系统具有约当形式哈密顿量时,基模保持互反而谐波产生是非互反的。因此,虽然提议的设备不能用作光学隔离器,但它可以用于许多其他设备,如激光腔,干涉测量和全息处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exceptional point generated robust asymmetric high-order harmonics
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.
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