Fini John M, Nicholson Jeffrey W, Windeler Robert S, Monberg Eric M, Meng Linli, Mangan Brian, Desantolo Anthony, DiMarcello Frank V
OFS Laboratories, 19 Schoolhouse Rd, Somerset, NJ 08873 USA.
Opt Express. 2013 Mar 11;21(5):6233-42. doi: 10.1364/OE.21.006233.
Hollow-core fibers (HCFs) are a revolution in light guidance with enormous potential. They promise lower loss than any other waveguide, but have not yet achieved this potential because of a tradeoff between loss and single-moded operation. This paper demonstrates progress on a strategy to beat this tradeoff: we measure the first hollow-core fiber employing Perturbed Resonance for Improved Single Modedness (PRISM), where unwanted modes are robustly stripped away. The fiber has fundamental-mode loss of 7.5 dB/km, while other modes of the 19-lattice-cell core see loss >3000 dB/km. This level of single-modedness is far better than previous 19-cell or 7-cell HCFs, and even comparable to some commercial solid-core fibers. Modeling indicates this measured loss can be improved. By breaking the connection between core size and single-modedness, this first PRISM demonstration opens a new path towards achieving the low-loss potential of HCFs.
空心光纤(HCFs)是光导领域的一项具有巨大潜力的革命。它们有望实现比其他任何波导更低的损耗,但由于在损耗与单模运行之间存在权衡,尚未实现这一潜力。本文展示了一种克服这种权衡的策略所取得的进展:我们测量了第一根采用用于改善单模性的微扰共振(PRISM)的空心光纤,在这种光纤中,不需要的模式被有力地消除。该光纤的基模损耗为7.5 dB/km,而19晶格单元纤芯的其他模式损耗大于3000 dB/km。这种单模水平远优于之前的19单元或7单元空心光纤,甚至可与一些商用实心光纤相媲美。建模表明,这种测量得到的损耗可以得到改善。通过打破纤芯尺寸与单模性之间的关联,首次PRISM演示为实现空心光纤的低损耗潜力开辟了一条新途径。