论文标题
合作亚波长分子量子发射极阵列
Cooperative subwavelength molecular quantum emitter arrays
论文作者
论文摘要
偶极耦合的亚波量量子发射极阵列对外部光场进行了响应,因为它们可以托管具有超级或亚基特征的集体离域激发(一种激发)。深层的下波长分离通常发生在分子集合中,除了光子 - 电子相互作用,电子 - 频率耦合和振动弛豫过程外,还起着重要作用。我们为偶极子分子环的超级和亚降低的修饰提供了分析和数值结果,包括振动自由度的激发。虽然通常认为振动对相干动力学有害,但我们表明,分子二聚体或环可以作为准备长寿命的黑暗叠加态的平台,该平台得到了振动弛豫的帮助。在封闭的环配置中,我们将相干光生成的先前预测从理想的量子发射器到分子发射器,从而量化了振动耦合到输出强度和相干性的作用。
Dipole-coupled subwavelength quantum emitter arrays respond cooperatively to external light fields as they may host collective delocalized excitations (a form of excitons) with super- or subradiant character. Deeply subwavelength separations typically occur in molecular ensembles, where in addition to photon-electron interactions, electron-vibron couplings and vibrational relaxation processes play an important role. We provide analytical and numerical results on the modification of super- and subradiance in molecular rings of dipoles including excitations of the vibrational degrees of freedom. While vibrations are typically considered detrimental to coherent dynamics, we show that molecular dimers or rings can be operated as platforms for the preparation of long-lived dark superposition states aided by vibrational relaxation. In closed ring configurations, we extend previous predictions for the generation of coherent light from ideal quantum emitters to molecular emitters, quantifying the role of vibronic coupling onto the output intensity and coherence.