Co-multiplexing spectral and temporal dimensions based on luminescent materials

Y Sheng, Y Zhang, F Xing, C Liu, Y Di, X Yang… - Optics …, 2023 - opg.optica.org
Y Sheng, Y Zhang, F Xing, C Liu, Y Di, X Yang, S Wei, X Zhang, Y Liu, Z Gan
Optics Express, 2023opg.optica.org
Optical multiplexing is a pivotal technique for augmenting the capacity of optical data
storage (ODS) and increasing the security of anti-counterfeiting. However, due to the dearth
of appropriate storage media, optical multiplexing is generally restricted to a single
dimension, thus curtailing the encoding capacity. Herein, the co-multiplexing spectral and
temporal dimensions are proposed for optical encoding based on photoluminescence (PL)
and persistent-luminescence (PersL) at four different wavelengths. Each emission color …
Optical multiplexing is a pivotal technique for augmenting the capacity of optical data storage (ODS) and increasing the security of anti-counterfeiting. However, due to the dearth of appropriate storage media, optical multiplexing is generally restricted to a single dimension, thus curtailing the encoding capacity. Herein, the co-multiplexing spectral and temporal dimensions are proposed for optical encoding based on photoluminescence (PL) and persistent-luminescence (PersL) at four different wavelengths. Each emission color comprises four luminescence modes. The further multiplexing of four wavelengths leads to the maximum encoding capacity of 8 bits at each pixel. The wavelength difference between adjacent peaks is larger than 50 nm. The well-separated emission wavelengths significantly lower the requirements for high-resolution spectrometers. Moreover, the information is unable to be decoded until both PL and PersL spectra are collected, suggesting a substantial improvement in information security and the security level of anti-counterfeiting.
opg.optica.org
以上显示的是最相近的搜索结果。 查看全部搜索结果