Journal of Semiconductors, Volume. 43, Issue 6, 062301(2022)
Direct writing-in and visualizing reading-out data storage with high capacity in low-cost plastics
Fig. 1. (Color online) Schematic diagram of the femtosecond laser writing system.
Fig. 2. (Color online) (a) PL spectra of pristine and laser-irradiated PMMA (single fs). The PL data were acquired using 355, 532 and 633 nm lasers. (b) SEM image of dots modified by threshold fs laser power at the surface. (c, d) Optical and confocal fluorescence microscopy images of the dots beneath the 30
Fig. 3. (Color online) (a) Absorption spectrum of pristine PMMA, the chemical structure of which is shown in the inset. (b) The 3D fluorescence structure of the array with fixed writing power (40 nJ) inside PMMA separated by 10
Fig. 4. (Color online) (a, c) Confocal fluorescence microscopy images of the dots (1st and 50th layers) written by a fs laser with a single pulse, scale bar: 20
Fig. 5. (Color online) Gray level assignment based on fluorescence distinguish. It should be noted that both (a) the fresh sample and (b) the aged sample can be of capability of 8 gray level assignment.
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Xin Wei, Weiwei Zhao, Jintao Yang, Yong Zhang, Junming Song, Zhenhua Ni, Junpeng Lu, Hongwei Liu. Direct writing-in and visualizing reading-out data storage with high capacity in low-cost plastics[J]. Journal of Semiconductors, 2022, 43(6): 062301
Category: Articles
Received: Dec. 16, 2021
Accepted: --
Published Online: Jun. 10, 2022
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