PT光子结构中光相干性的处理和测量(会议报告)

Kai Wang, S. Suchkov, James G. Titchener, S. Weimann, D. Christodoulides, A. Szameit, A. Sukhorukov
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引用次数: 0

摘要

光相干性在经典和量子应用中都具有重要的基础意义。这激发了提高一致性程度的方法的发展,这种一致性可以通过纯度的度量来量化。在线性保守系统中,纯度得以保持,因此相干性的操纵可以通过在体光学装置或涉及光吸收和等离激元耦合的金属薄膜上的衍射中特别引入的损耗来实现。本文首次提出并通过实验证明,在由不同损耗或增益元素组成的非厄米奇偶时间(PT)对称光子结构中,可以有效地实现光学相干性和态纯化的操作和测量。具体而言,我们设计并制造了包含两个部分的激光写入波导定向耦合器。第一部分实现了一个类似pt的耦合器,其中两个波导中的一个通过调制具有额外的辐射损失。第二部分由具有特殊调谐传播常数的直耦合波导组成,该波导经过优化,通过荧光成像测量两个波导中的干涉图案,从而能够完全重建纯度和光学相干性。在PT对称状态下,我们观察到最初完全不相干(混合)状态的纯度随着输入状态的恢复而增加。这为PT耦合波导中光相干性的可逆操纵提供了重要的实验证据。我们预计这种方法可以促进从经典光学到量子光学的广泛应用,包括滤除噪声和优化干涉测量的可见性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Manipulation and measurement of optical coherence in PT photonic structures (Conference Presentation)
Optical coherence is of fundamental importance for both classical and quantum applications. This motivates the development of approaches for increasing the degree of coherence, which can be quantified by a measure of purity. The purity is preserved in linear conservative systems, and accordingly the manipulation of coherence was realized with specially introduced loss in bulk optical setups or diffraction on metal films involving optical absorption and plasmon coupling. Here we suggest and show experimentally for the first time that manipulation and measurement of optical coherence and state purification can be efficiently realized in integrated non-Hermitian parity-time (PT) symmetric photonic structures composed of elements with different loss or gain. Specifically, we design and fabricate laser-written waveguide directional couplers that contain two sections. The first section realizes a PT-like coupler, where one of the two waveguides features extra radiative losses via modulation. The second section consists of straight coupled waveguides with specially detuned propagation constants, which are optimized to enable a full reconstruction of the purity and optical coherence by measuring the interference pattern in both waveguides through fluorescence imaging. In PT symmetric regime, we observe that the purity of an initially fully incoherent (mixed) state is increased followed by a revival of the input state. This constitutes an important experimental evidence of reversible manipulation of light coherence in PT coupled waveguides. We anticipate that this method can facilitate a wide range of applications from classical to quantum optics, including filtering out noise and optimizing the visibility of interferometric measurements.
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