论文标题
观察具有纤维激光器中鱿鱼样行为,具有腔内epsilon-near-Zero效应
Observation of SQUID-like behavior in fiber laser with intra-cavity epsilon-near-zero effect
论文作者
论文摘要
在遥远的物理区域中建立基本效应之间的关系是当前研究中引起人们极大兴趣的主题。我们在这里报告了类似于射频超导量子干扰装置(RF-squid)的新型光子系统,在带有epsilon-near-near-Zero(ENZ)纳米层的纤维激光器腔中,作为腔内组件。模拟由光波代表的超级电流的光子式方案,即光波的光子对应物,在腔中循环,穿过有效的光学势屏障。不同的ENZ波长通过腔共振的变化转化为不同的光谱输出,从而在RF-squid中使用频率变化的储罐电路模拟了情况。由于ENZ元素的存在,对于选定的频率组件而言,光势势垒要低得多,在增益资源竞争中赋予了它们优势。这项工作中报道的发现提供了对超快ENZ光子学的更深入的见解,这揭示了一种具有各种操作功能的纳米光片上设计的新途径,并提供了一种研究超导和量子力学系统的新方法。
Establishing relations between fundamental effects in far-flung areas of physics is a subject of great interest in the current research. We here report realization of a novel photonic system akin to the radio-frequency superconducting quantum interference device (RF-SQUID), in a fiber laser cavity with epsilon-near-zero (ENZ) nanolayers as intra-cavity components. Emulating the RF-SQUID scheme, the photonic counterpart of the supercurrent, represented by the optical wave, circulates in the cavity, passing through effective optical potential barriers. Different ENZ wavelengths translate into distinct spectral outputs through the variation of cavity resonances, emulating the situation with a frequency-varying tank circuit in the RF-SQUID. Due to the presence of the ENZ element, the optical potential barrier is far lower for selected frequency components, granting them advantage in the gain-resource competition. The findings reported in this work provide a deeper insight into the ultrafast ENZ photonics, revealing a new path towards the design of nanophotonic on-chip devices with various operational functions, and offer a new approach to study superconducting and quantum-mechanical systems.