Partanen Mikko, Tulkki Jukka
Photonics Group, Department of Electronics and Nanoengineering, Aalto University, P.O. Box 13500, 00076, Aalto, Finland.
Engineered Nanosystems Group, School of Science, Aalto University, P.O. Box 12200, 00076, Aalto, Finland.
Sci Rep. 2022 Apr 26;12(1):6753. doi: 10.1038/s41598-022-10699-7.
The momentum and radiation pressure of light in negative-index metamaterials (NIMs) are commonly expected to reverse their direction from what is observed for normal materials. The negative refraction and inverse Doppler effect of light in NIMs have been experimentally observed, but the equally surprising phenomenon, the negative radiation pressure of light, still lacks experimental verification. We show by simulating the exact position- and time-dependent field-material dynamics in NIMs that the momentum and radiation pressure of light in NIMs can be either positive or negative depending on their subwavelength structure. In NIMs exhibiting negative radiation pressure, the negative total momentum of light is caused by the sum of the positive momentum of the electromagnetic field and the negative momentum of the material. The negative momentum of the material results from the optical force density, which drives atoms backward and reduces the local density of atoms at the site of the light field. In contrast to earlier works, light in NIMs exhibiting negative radiation pressure has both negative total momentum and energy. For the experimental discovery of the negative radiation pressure, one must carefully design the NIM structure and record the joint total pressure of the field and material momentum components.
通常认为,光在负折射率超材料(NIMs)中的动量和辐射压力会与在普通材料中观察到的情况相反,其方向会发生反转。光在NIMs中的负折射和逆多普勒效应已通过实验观察到,但同样令人惊讶的现象——光的负辐射压力,仍缺乏实验验证。我们通过模拟NIMs中精确的位置和时间相关的场-材料动力学表明,光在NIMs中的动量和辐射压力可以是正的也可以是负的,这取决于它们的亚波长结构。在表现出负辐射压力的NIMs中,光的负总动量是由电磁场的正动量和材料的负动量之和引起的。材料的负动量源于光力密度,它驱使原子向后移动并降低光场所在位置的原子局部密度。与早期的研究不同,表现出负辐射压力的NIMs中的光同时具有负的总动量和能量。为了通过实验发现负辐射压力,必须仔细设计NIM结构并记录场和材料动量分量的联合总压力。