发光
多路复用
材料科学
光电子学
三维光学数据存储
微秒
光子上转换
纳米晶
纳米技术
吞吐量
光学
计算机科学
物理
电信
无线
作者
Yiqing Lu,Jiangbo Zhao,Run Zhang,Yujia Liu,Deming Liu,Ewa M. Goldys,Xusan Yang,Peng Xi,Anwar Sunna,Jie Lu,Yu Shi,Robert C. Leif,Yu Huo,Jian Shen,James A. Piper,J. Paul Robinson,Dayong Jin
标识
DOI:10.1038/nphoton.2013.322
摘要
Optical multiplexing plays an important role in applications such as optical data storage1, document security2, molecular probes3,4 and bead assays for personalized medicine5. Conventional fluorescent colour coding is limited by spectral overlap and background interference, restricting the number of distinguishable identities. Here, we show that tunable luminescent lifetimes τ in the microsecond region can be exploited to code individual upconversion nanocrystals. In a single colour band, one can generate more than ten nanocrystal populations with distinct lifetimes ranging from 25.6 µs to 662.4 µs and decode their well-separated lifetime identities, which are independent of both colour and intensity. Such ‘τ-dots’ potentially suit multichannel bioimaging, high-throughput cytometry quantification, high-density data storage, as well as security codes to combat counterfeiting. This demonstration extends the optical multiplexing capability by adding the temporal dimension of luminescent signals, opening new opportunities in the life sciences, medicine and data security. Control over the luminescence lifetimes of upconversion nanocrystals allows a new form of temporal multiplexing for imaging and data-storage applications.
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