Advanced Photonics Nexus, Volume. 1, Issue 2, 026002(2022)
Centimeter scale color printing with grayscale lithography On the Cover
Fig. 1. Schematic diagram of the working principle of the color printing by using pixelated F–P cavities. The F–P cavity consists of a silver (Ag)/PR/silver (Ag) sandwich structure. The spatially variant thickness of the PR layer is realized through the laser grayscale lithography process. Under the illumination of a white light source, the colorful image with a micron-scale spatial resolution can be obtained.
Fig. 2. Calculated optical responses of the silver (Ag)/PR/silver (Ag) F–P cavities. (a) The cross-section of the F–P cavity. The silver film with a thickness of 30 nm and the PR layer serve as the mirror and the spacer of the F–P cavity, respectively. The F–P cavity sitting on the glass substrate is encapsulated by a 20-nm-thick
Fig. 3. Optical properties of the color palettes. (a) Under the illumination of a halogen lamp, the white-balanced photos of the color palettes are taken by using a commercial camera.
Fig. 4. Centimeter scale color printing with the pixelated F–P cavities. (a) The grayscale figure is converted from the original drawing. (b) Under the illumination of a halogen lamp, the white balanced photo of the centimeter scale color printing device. (c) and (d) The microscopy images of the regions R1 and R2, which are shown by the white dashed box in (b). (e) and (f) The 3D profiles of the regions R1 and R2, which are measured by using a white light interferometer. The scale bars in (a) and (b) are 1 mm. The scale bars in (c), (d), (e), and (f) are
Fig. 5. The microscopy images of the color filter arrays made of pixelated F–P cavities. (a)–(d) The working wavelengths of the four kinds of color filters are 669 nm (red), 591 nm (yellow), 545 nm (green), and 468 nm (blue). The pixel sizes in (a)–(d) are
Get Citation
Copy Citation Text
Yu Chen, Yang Li, Wenhao Tang, Yutao Tang, Yue Hu, Zixian Hu, Junhong Deng, Kokwai Cheah, Guixin Li, "Centimeter scale color printing with grayscale lithography," Adv. Photon. Nexus 1, 026002 (2022)
Category: Research Articles
Received: Jun. 7, 2022
Accepted: Sep. 5, 2022
Published Online: Oct. 8, 2022
The Author Email: Guixin Li (ligx@sustech.edu.cn)