Ma Zelin, Kristensen Poul, Ramachandran Siddharth
Boston University, Boston, MA 02215, USA.
OFS-Fitel, 2605 Brøndby, Denmark.
Science. 2023 Apr 21;380(6642):278-282. doi: 10.1126/science.add1874. Epub 2023 Apr 20.
Spatial mode-count scalability in optical fibers is of paramount importance for addressing the upcoming information-capacity crunch, reducing energy consumption per bit, and for enabling advanced quantum computing networks, but this scalability is severely limited by perturbative mode mixing. We show an alternative means of light guidance, in which light's orbital angular momentum creates a centrifugal barrier for itself, thereby enabling low-loss transmission of light in a conventionally forbidden regime wherein the mode mixing can be naturally curtailed. This enables kilometer-length-scale transmission of a record ~50 low-loss modes with cross-talk as low as -45 decibels/kilometer and mode areas of ~800 square micrometers over a 130-nanometer telecommunications spectral window. This distinctive light-guidance regime promises to substantially increase the information content per photon for quantum or classical networks.
光纤中的空间模式数量可扩展性对于应对即将到来的信息容量危机、降低每比特能耗以及实现先进的量子计算网络至关重要,但这种可扩展性受到微扰模式混合的严重限制。我们展示了一种光导的替代方法,其中光的轨道角动量为自身创造了一个离心势垒,从而能够在传统上被禁止的区域实现光的低损耗传输,在该区域模式混合可以自然减少。这使得在130纳米电信光谱窗口内能够实现长达千米级的传输,传输约50个低损耗模式,串扰低至-45分贝/千米,模式面积约为800平方微米。这种独特的光导机制有望大幅增加量子或经典网络中每个光子的信息含量。