Nolen J Ryan, Overvig Adam C, Cotrufo Michele, Alù Andrea
Photonics Initiative, Advanced Science Research Center, City University of New York, New York, NY, USA.
Physics Program, Graduate Center of the City University of New York, New York, NY, USA.
Nat Nanotechnol. 2024 Nov;19(11):1627-1634. doi: 10.1038/s41565-024-01763-6. Epub 2024 Aug 23.
Thermal emission from a hot body is inherently challenging to control due to its incoherent nature. Recent advances have shown that patterned surfaces can transform thermal emission into partially coherent beams with tailored directionality and frequency selectivity. Here we experimentally demonstrate polarization-selective, unidirectional and narrowband thermal emission using single-layer metasurfaces. By implementing polarization gradients across the surface, we unveil a generalization of the photonic Rashba effect from circular polarizations to any pair of orthogonal polarizations and apply it to thermal emission. Leveraging pointwise specification of arbitrary elliptical polarization, we implement a thermal geometric phase and leverage it to prove previous theoretical predictions that asymmetric chiral emission is possible without violating reciprocity. This general platform can be extended to other frequency regimes in efforts to compactify metasurface optics technologies without the need for external coherent sources.
由于热体的热发射具有非相干特性,因此对其进行控制具有内在的挑战性。最近的进展表明,图案化表面可以将热发射转化为具有定制方向性和频率选择性的部分相干光束。在此,我们通过实验展示了使用单层超表面实现偏振选择性、单向和窄带热发射。通过在表面实现偏振梯度,我们揭示了从圆偏振到任意一对正交偏振的光子Rashba效应的推广,并将其应用于热发射。利用任意椭圆偏振的逐点指定,我们实现了热几何相位,并利用它来证明先前的理论预测,即不对称手性发射在不违反互易性的情况下是可能的。这个通用平台可以扩展到其他频率范围,以努力在无需外部相干源的情况下实现超表面光学技术的紧凑化。