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Formation of Bound States in the Continuum in Hybrid Plasmonic-Photonic Systems

机译:混合等离子-光子系统连续谱中束缚态的形成

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A bound state in the continuum (BIC) is a localized state of an open structure with access to radiation channels, yet it remains highly confined with, in theory, an infinite lifetime and quality factor. There have been many realizations of such exceptional states in dielectric systems without loss. However, realizing BICs in lossy systems such as those in plasmonics remains a challenge. In this Letter, we explore the possibility of realizing BICs in a hybrid plasmonic-photonic structure consisting of a plasmonic grating coupled to a dielectric optical waveguide with diverging radiative quality factors. The plasmonic-photonic system supports two distinct groups of BICs: symmetry-protected BICs at the Gamma point and off-Gamma Friedrich-Wintgen BICs. The photonic waveguide modes are strongly coupled to the gap plasmons in the grating, leading to an avoided crossing behavior with a high value of Rabi splitting of 150 meV. Moreover, we show that the strong coupling significantly alters the band diagram of the hybrid system, revealing opportunities for supporting stopped light at an off-G wide angular span.
机译:连续体(BIC)中的束缚状态是开放结构的局部状态,可以访问辐射通道,但从理论上讲,它仍然受到无限的寿命和品质因数的高度限制。已经在介电系统中无损地实现了这种特殊状态的许多实现。但是,如何在有损系统中(例如在等离子体控制系统中)实现BIC仍然是一个挑战。在这封信中,我们探讨了在等离激元光子混合结构中实现BIC的可能性,该结构由等离激元光栅耦合到具有不同辐射品质因数的介电光波导组成。等离子体光子系统支持两种不同的BIC:在Gamma点受对称保护的BIC和非Gamma Friedrich-Wintgen BIC。光子波导模式牢固地耦合到光栅中的间隙等离子体激元,从而避免了具有150 meV的高拉比分裂值的交叉行为。此外,我们显示出强耦合会显着改变混合系统的能带图,从而揭示了在Off-G宽角跨度下支持停止光的机会。

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