论文标题

基于生物启发的纳米尺度原子环设计的有效频率选择性单光子天线,具有9倍对称性

Efficient frequency-selective single-photon antennas based on a bio-inspired nano-scale atomic ring design with 9-fold symmetry

论文作者

Moreno-Cardoner, Maria, Holzinger, Raphael, Ritsch, Helmut

论文摘要

密闭阵列中的量子发射器表现出依赖性的集体动力学。尤其是,纳米镜的常规多边形阵列可以具有子速度状态,并具有激子寿命,并以发射极数成倍增长。我们表明,通过将额外的谐振吸收偶极子放置在环中心,这种结构成为具有可调节频率的高效单光子吸收器。有趣的是,对于非正约中的九个发射器,正如它出现在常见的生物光收获复合物(LHC2)中一样,我们发现其最暗的衰减速率和最大有效的吸收横截面的最小最小值,可超过单个吸收性发射器。这九个发射器的最佳量的起源可以在几何学上追溯到以下事实:单个环发射器的耦合强度之和与所有其他环的耦合强度之和,包括中心环与中心与所有环发射器的耦合非常匹配。新兴的深色集体本征具有主要的中心职业,可促进有效的能量吸收和快速运输。共振频率可以通过环大小和偶极极化调节。与抛物线天线类似,环将传入的辐射集中在中心而不会显着激发,从而最大程度地减少了运输损失和时间。

Quantum emitters in confined arrays exhibit geometry dependent collective dynamics. In particular, nanoscopic regular polygon-shaped arrays can possess sub-radiant states with an exciton lifetime growing exponentially with emitter number. We show that by placing an extra resonant absorptive dipole at the ring center, such a structure becomes a highly efficient single-photon absorber with tailorable frequency. Interestingly, for exactly nine emitters in a nonagon, as it appears in a common biological light-harvesting complex (LHC2), we find a distinct minimum for its most dark state decay rate and a maximum of the effective absorption cross-section, surpassing that for a single absorptive emitter. The origin of this optimum for nine emitters can be geometrically traced to the fact that the sum of coupling strengths of a single ring emitter to all others including the center ring closely matches the coupling of the center to all ring emitters. The emerging dark collective eigenstate has dominant center occupation facilitating efficient energy absorption and fast transport. The resonance frequency can be tuned via ring size and dipole polarization. In analogy to parabolic antennas, the ring concentrates the incoming radiation at the center without being significantly excited, which minimizes transport loss and time.

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