Location: Home > Research > Publications > Content
Publications in 2012
Read [] Time :2016-12-05 13:20:01

1Wang, J., Bu, J., Wang, M., Yang, Y., & Yuan, X. C. “Improved sinusoidal phase plate to extend depth of field in incoherent hybrid imaging systems”. Optics letters, 37(21), 4534-4536. (2012). 

2Guo, L. J., Min, C. J., Yuan, G. H., Zhang, C. L., Wang, J. G., Shen, Z., & Yuan, X. C. “Optically stitched arbitrary fan-sectors with selective polarization states for dynamic manipulation of surface plasmon polaritons”. Optics express, 20(22), 24748-24753. (2012).

3Jiao, X., Zhao, X., Yang, Y., Fang, Z., & Yuan, X. C. “Dual-camera enabled real-time three-dimensional integral imaging pick-up and display”. Optics express, 20(25), 27304-27311. (2012).

4Zhang, L., Yang, Y., Zhao, X., Fang, Z., & Yuan, X. C. “Enhancement of depth-of-field in a direct projection-type integral imaging system by a negative lens array”. Optics express, 20(23), 26021-26026. (2012).

5Cao, R., Hua, Y., Min, C., Zhu, S., & Yuan, X. C. “Self-healing optical pillar array”. Optics Letters, 37(17), 3540-3542. (2012).

6Wang, B., Zhang, X., García-Vidal, F. J., Yuan, X., & Teng, J. “Strong coupling of surface plasmon polaritons in monolayer graphene sheet arrays”. Physical Review Letters, 109(7), 073901. (2012).

7Yuan, G. H., Wang, Q., Tan, P. S., Lin, J., & Yuan, X. C. “A dynamic plasmonic manipulation technique assisted by phase modulation of an incident optical vortex beam”. Nanotechnology, 23(38), 385204. (2012).

8Zhang, Q. Q., Wu, X. J., Tang, T., Zhu, S. W., Yao, Q., Gao, B. Z., & Yuan, X. C. “Quantitative analysis of rectal cancer by spectral domain optical coherence tomography”. Physics in Medicine and Biology, 57(16), 5235. (2012).

9Wang, J., Shen, S., Yang, Y., Bu, J., Zhao, X., & Yuan, X. C. “Enhanced Depth of Field in Integral Imaging for 3D Display With a Cubic Phase Plate Coded Camera Array”. Journal of Display Technology, 8(10), 577-581.

10Yuan, G., Wang, Q., & Yuan, X. C. “Dynamic generation of plasmonic Moiré fringes using phase-engineered optical vortex beam”. Optics Letters, 37(13), 2715-2717. (2012).

11Wang, R., Zhang, C., Yang, Y., Zhu, S., & Yuan, X. C. “Focused cylindrical vector beam assisted microscopic pSPR biosensor with an ultra wide dynamic range”. Optics Letters, 37(11), 2091-2093. (2012).

12Zhang, Q., Wang, J., Wang, M., Bu, J., Zhu, S., Gao, B. Z., & Yuan, X. C. “Depth of focus enhancement of a modified imaging quasi-fractal zone plate”. Optics Laser Technology, 44, 2140-2144. (2012).

13Liu, Y. J., Si, G. Y., Leong, E. S. P., Wang, B., Danner, A. J., Yuan, X. C., & Teng, J. H. “Optically tunable plasmonic color filters”. Applied Physics A, 107(1), 49-54. (2012).

14Dai, Z., Wang, J., Zhao, X., Yang, Y., Bu, J., & Yuan, X. C. “Fast acquisition of 3D images in a modified optical microscope based on integral imaging”. Science China Technological Sciences, 55(4), 977-981. (2012).

15Wang, B., Teng, J., & Yuan, X. C. “Frequency control of surface plasmons with oscillating metal-insulator-metal waveguides”. Applied Physics A: Materials Science & Processing, 107, 43-48. (2012).

16Wang, Q., Bu, J., Tan, P. S., Yuan, G. H., Teng, J. H., Wang, H., & Yuan, X. C. “Subwavelength-Sized Plasmonic Structures for Wide-Field Optical Microscopic Imaging with Super-Resolution”. Plasmonics, 7(3), 427-433. (2012).