Oka Hisaki
Institute for Research Promotion, Niigata University, 8050, Ikarashi 2-no-cho, Nishi-ku, Niigata, 950-2181, Japan.
Sci Rep. 2017 Aug 14;7(1):8047. doi: 10.1038/s41598-017-08431-x.
Application of quantum entangled photons is now extending to various fields in physics, chemistry and biology. In particular, in terms of application to molecular science, broadband ultraviolet frequency-entangled photons are desired because molecules inducing photochemical reactions of interest often have electronic transition energies in the ultraviolet region. Recent standard method for generating such entangled photons is a chirped quasi-phase-matching method, however this method is not suitable for the generation of ultraviolet frequency-entangled photons because it requires down-conversion of a photon with a wavelength shorter than ultraviolet into an entangled photon pair. Here we propose a simple method for generating broadband ultraviolet frequency-entangled photons using cavity quantum plasmonics, in which conventional cavity quantum electrodynamics theory is applied to quantum plasmonics. We introduce a cavity-plasmon system in which localised surface plasmon (LSP) is coupled to the cavity fields of a state-of-the-art microcavity. Using this system, we theoretically show that broadband ultraviolet frequency-entangled photons can be generated simply by utilising the absorption saturation effect of LSP.
量子纠缠光子的应用如今正在扩展到物理、化学和生物学的各个领域。特别是在分子科学应用方面,宽带紫外频率纠缠光子备受青睐,因为引发感兴趣的光化学反应的分子通常在紫外区域具有电子跃迁能量。目前产生此类纠缠光子的标准方法是啁啾准相位匹配方法,然而该方法不适用于产生紫外频率纠缠光子,因为它需要将波长比紫外光短的光子下转换为纠缠光子对。在此,我们提出一种利用腔量子等离子体激元产生宽带紫外频率纠缠光子的简单方法,其中将传统的腔量子电动力学理论应用于量子等离子体激元。我们引入一种腔等离子体激元系统,其中局域表面等离子体(LSP)与最先进的微腔的腔场耦合。利用该系统,我们从理论上表明,只需利用LSP的吸收饱和效应就能产生宽带紫外频率纠缠光子。