论文标题
表面声子极化子的发电
Electrical Generation of Surface Phonon Polaritons
论文作者
论文摘要
由于缺乏天然偶极子活性电子过渡的材料,因此中红外光的有效发电是具有挑战性的。解决这个问题的一种方法是通过量子工程电子分散剂来创建人工过渡,就像在量子级联设备中一样。在这项工作中,我们提出了一种产生中红外光的替代方法,利用纳米镜面介电晶体的非局部光学响应引起的纵向和横向自由度之间的耦合。极性晶体支持中红外的子分量光子模式。它们还支持纵向声子,通过Fröhlich相互作用有效地与电流有效。正如我们在以前的理论和实验著作中所表明的那样,这两个自由度可以杂交形成纵向反向极性子。从理论上讲,在这里,我们证明了纵向横向极性子可以通过电流有效地产生,从而导致共振窄带光子发射。因此,在没有偶极子活性电子跃迁的情况下,该方法可用于电力生成远场中红外光子,这可能是基于新型中红外光电设备的基础。
Efficient electrical generation of mid-infrared light is challenging because of the dearth of materials with natural dipole-active electronic transitions in this spectral region. One approach to solve this problem is through quantum-engineering of the electron dispersion to create artificial transitions, as in quantum cascade devices. In this work we propose an alternative method to generate mid-infrared light, utilizing the coupling between longitudinal and transverse degrees of freedom due to the nonlocal optical response of nanoscopic polar dielectric crystals. Polar crystals support sub-diffraction photonic modes in the mid-infrared. They also support longitudinal phonons, which couple efficiently with electrical currents through the Fröhlich interaction. As we have shown in previous theoretical and experimental works, these two degrees of freedom can hybridize forming longitudinal-transverse polaritons. Here we theoretically demonstrate that longitudinal-transverse polaritons can be efficiently generated by electrical currents, leading to resonant narrowband photonic emission. This approach can therefore be utilised to electrically generate far-field mid-infrared photons in the absence of dipole-active electronic transitions, potentially underpinning a novel generation of mid-infrared optoelectronic devices.