Hu Yang, Wu Xiaohu, Liu Haotuo, Huang Xiuquan
School of Power and Energy, Northwestern Polytechnical University, Xi'an 710072, Shaanxi, P.R. China.
Shandong Institute of Advanced Technology, Jinan 250100, Shandong, P.R. China.
Nanophotonics. 2024 May 9;13(16):2983-2994. doi: 10.1515/nanoph-2024-0065. eCollection 2024 Jul.
Casimir interaction is an intriguing phenomenon that is induced by electromagnetic quantum fluctuations, which dominates the interaction between microstructures at small separations and is essential for micro- and nano-electromechanical systems (MEMS and NEMS). However, Casimir interaction driven by hyperbolic polaritons remains an unexplored frontier. In this work, we investigate the Casimir interaction between natural hyperbolic material hexagonal boron nitride from the perspective of force distribution with different optical axis orientations for the first time. The attractive Casimir force is remarkably enhanced due to the excitation of volume-confined hyperbolic polaritons (HPs). Furthermore, distinct repulsive contributions to the force are observed due to surface-confined HPs that only exist when the optical axis is in-plane. The HPs are associated with a striking thickness dependence of spectral force properties, suggesting that the discrete volume-confined HPs lead to the attractive-repulsive transition of Casimir force. This work sheds light on the relation between HPs and the vacuum fluctuation-induced force, which could offer new opportunities for the development of the MEMS and NEMS.
卡西米尔相互作用是一种由电磁量子涨落引发的有趣现象,它在小间距时主导微观结构间的相互作用,对微纳机电系统(MEMS和NEMS)至关重要。然而,由双曲极化激元驱动的卡西米尔相互作用仍是一个未被探索的前沿领域。在这项工作中,我们首次从不同光轴取向的力分布角度研究了天然双曲材料六方氮化硼之间的卡西米尔相互作用。由于体限制双曲极化激元(HPs)的激发,吸引性的卡西米尔力显著增强。此外,由于仅在光轴面内时才存在的表面限制HPs,观察到了对力的明显排斥贡献。HPs与光谱力特性显著的厚度依赖性相关,这表明离散的体限制HPs导致了卡西米尔力的吸引 - 排斥转变。这项工作揭示了HPs与真空涨落诱导力之间的关系,这可能为MEMS和NEMS的发展提供新机遇。