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相对论性 E×B 漂移引发的向偏振奇点的加速。

Acceleration toward polarization singularity inspired by relativistic E×B drift.

机构信息

Photonic Systems Laboratory, Department of Electrical and Computer Engineering, Seoul National University, Seoul 08826, Korea.

出版信息

Sci Rep. 2016 Nov 24;6:37754. doi: 10.1038/srep37754.

Abstract

The relativistic trajectory of a charged particle driven by the Lorentz force is different from the classical one, by velocity-dependent relativistic acceleration term. Here we show that the evolution of optical polarization states near the polarization singularity can be described in analogy to the relativistic dynamics of charged particles. A phase transition in parity-time symmetric potentials is then interpreted in terms of the competition between electric and magnetic 'pseudo'-fields applied to polarization states. Based on this Lorentz pseudo-force representation, we reveal that zero Lorentz pseudo-force is the origin of recently reported strong polarization convergence to the singular state at the exceptional point. We also demonstrate the deterministic design of achiral and directional eigenstates at the exceptional point, allowing an anomalous linear polarizer which operates orthogonal to forward and backward waves. Our results linking parity-time symmetry and relativistic electrodynamics show that previous PT-symmetric potentials for the polarization singularity with a chiral eigenstate are the subset of optical potentials for the E×B "polarization" drift.

摘要

在洛伦兹力的作用下,带电粒子的相对论轨迹与经典轨迹不同,因为存在与速度相关的相对论加速度项。在这里,我们表明,在极化奇点附近,光学偏振态的演化可以类比于带电粒子的相对论动力学来描述。然后,我们根据电和磁“赝”场对偏振态的作用的竞争,解释了宇称时间对称势中的相变。基于这个洛伦兹赝力表示,我们揭示了零洛伦兹赝力是最近报道的在异常点处极化收敛到奇异态的强极化的起源。我们还展示了在异常点处非手性和定向本征态的确定性设计,允许异常线性起偏器在正向和反向波中正交工作。我们将宇称时间对称和相对论电动力学联系起来的结果表明,以前用于极化奇点的具有手性本征态的宇称时间对称势是 E×B“极化”漂移的光学势的子集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/200f/5121894/c4cbb52e9a14/srep37754-f1.jpg

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