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Applied Optics|November 12, 2010
Design of diffractive phase elements that produce focal annuli: a new methodG Q Zhang, B Y Gu, G Z YangApplied Optics|March 8, 2008
Design of polarization-selective diffractive phase elements in a laser cavityJ Liu, B Y Gu, G Z YangApplied Optics|March 22, 2008
Entirely electromagnetic analysis of microlenses without a beam-shaping apertureJ Liu, B Z Dong, B Y Gu, et al.Applied Optics|November 2, 2010
Diffractive phase elements for beam shaping: a new design methodX Tan, B Y Gu, G Z Yang, et al.Optics Letters|December 18, 2007
Diffractive phase elements that synthesize color pseudo-nondiffracting beamsR Liu, B Y Gu, B Z Dong, et al.Optics Letters|December 19, 2007
Optical implementations of the Radon-Wigner display for one-dimensional signalsY Zhang, B Y Gu, B Z Dong, et al.Journal of the Optical Society of America. A, Optics, Image Science, and Vision|July 11, 2001
Rigorous electromagnetic analysis of a microcylindrical axilens with long focal depth and high transverse resolutionB Z Dong, J Liu, B Y Gu, et al.Applied Optics|December 15, 2010
Design and fabrication of a diffractive phase element for wavelength demultiplexing and spatial focusing simultaneouslyB Z Dong, G Q Zhang, G Z Yang, et al.Applied Optics|September 24, 2010
Gerchberg-Saxton and Yang-Gu algorithms for phase retrieval in a nonunitary transform system: a comparisonG Z Yang, B Z Dong, B Y Gu, et al.Applied Optics|November 6, 2010
Diffractive-phase-element design that implements several optical functionsB Y Gu, G Z Yang, B Z Dong, et al.Pageof 24