论文标题

偶极耦合纳米辐射和能量的极化控制

Polarization Control of Radiation and Energy Flow in Dipole-Coupled Nanorings

论文作者

Cremer, Julian, Plankensteiner, David, Moreno-Cardoner, Mariona, Ostermann, Laurin, Ritsch, Helmut

论文摘要

亚波长量子发射器的偶极耦合纳米中的集体光激发表现出极端的亚降低和野外限制,促进了有效且低损坏的环向环的能量转移。我们表明,可以通过单个偶极子的方向来量身定制激子和biexcitons的能量转移,辐射寿命以及激子和Biexcitons的发射模式。从垂直线到切向到环的极化倾斜极大地改变了对称激子状态的寿命,从上级到次级,并随着辐射的轨道采集轨道角动量。在魔术倾斜角度,所有激子都是退化的,两个环之间的运输保真度最少。进一步的模拟表明,对于某些参数,衰减随发射极密度的双重指数降低。环的结构中的疾病甚至可以增强辐射寿命。运输效率在很大程度上取决于极化和大小,我们通过在生物光收集复合物(LHC)中模拟了两个环的生物启发的示例,其两个环的生物启发示例。全LHC多环结构中最上级状态的场分布在中央环中显示出紧密的次波长场限制,而长寿命的次级态储存了外环中的能量。

Collective optical excitations in dipole-coupled nanorings of sub-wavelength spaced quantum emitters exhibit extreme sub-radiance and field confinement facilitating an efficient and low-loss ring-to-ring energy transfer. We show that energy shifts, radiative lifetimes, and emission patterns of excitons and biexcitons in such rings can be tailored via the orientation of the individual dipoles. Tilting the polarization from perpendicular to tangential to the ring dramatically changes the lifetime of the symmetric exciton state from superradiance to subradiance with the radiated field acquiring orbital angular momentum. At a magic tilt angle all excitons are degenerate and the transport fidelity between two rings exhibits a minimum. Further simulations suggest that, for certain parameters, the decay decreases double-exponentially with the emitter's density. Disorder in the rings' structure can even enhance radiative lifetimes. The transport efficiency strongly depends on polarization and size, which we demonstrate by simulating a bio-inspired example of two rings with 9 and 16 dipoles as found in biological light harvesting complexes (LHC). The field distribution in the most superradiant state in a full LHC multi-ring structure shows tight sub-wavelength field confinement in the central ring, while long-lived subradiant states store energy in the outer rings.

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