光纤布拉格光栅
材料科学
纤维
磷
光纤
光电子学
光学
复合材料
光纤传感器
物理
渐变折射率纤维
作者
Qiaochu Yang,Zhiyuan Xu,Xu Yue,Junqiu Long,Haopeng Wang,Yihan Zha,Fu-Rong Feng,Yang Ran,Bai‐Ou Guan
标识
DOI:10.1038/s41467-025-61538-y
摘要
In antiquity, civilizations employed stone carvings and knotted quipu cords for information preservation. Modern telecommunications rely on optical fibers - silica glass strands engineered for light transmission - yet their capacity as archival media remains untapped. This study explores a novel fiber Bragg grating (FBG) configuration exhibiting thermally programmable memory effects for optical data storage. Capitalizing on temperature-dependent spectral characteristics, we demonstrate finite spectral tuning through controlled thermal annealing, achieving irreversible spectral modifications via a light-induced stress mechanism analogous to the Kovacs memory effect in glassy materials. The engineered dual-dip FBG architecture enables multiplexed wavelength encoding, functioning simultaneously as a thermal history recorder and laser-writable data medium - mirroring the information knots of ancient quipu devices. This optical quipu concept pioneers one-dimensional photonic memory technology, opening new avenues for optical fiber applications in the information age.
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