Hou Zhiyun
Yanshan University
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Publication
Featured researches published by Hou Zhiyun.
Applied Optics | 2006
Zhou Gui-Yao; Hou Zhiyun; Li Shu-Guang; Hou Lan-Tian
We demonstrate a novel method for the fabrication of glass photonic crystal fibers (PCFs) with a die-cast process. SF6 glass is used as the material for PCFs, and the die is made of heat-resisting alloy steel, whose inner structure matches the PCFs structure. The die is put vertically in the vessel with SF6 glass, and the vacuum hose is attached to the top of the die. The die and glass are put in the furnace to heat at 870 K. The die is slowly filled with the softening glass under vacuum conduction until it is full. It is kept in the furnace to anneal at a rate of 20 K/h to remove the thermal stress that could lead to cracks. The outer tube of the die is taken apart when its temperature is close to room temperature, and the fused glass bundle is etched in an acidic solution to remove the heat-resisting alloy steel rods. Thus, the etched bundle is ready to use as a PCF preform. The PCF is observed in the generation of a supercontinuum, with the flat plateau in the spectrum of the output emission stretching from 400 to 1400 nm by experimental measurement. The transmission loss is 0.2-0.3 dB/m at wavelengths of 420-900 nm.
Chinese Physics Letters | 2005
Zhou Gui-Yao; Hou Zhiyun; Li Shu-Guang; Hou Lan-Tian
Using the classic principles of mechanics, we discuss the shape transformation of the micro-structure fibre preform under high temperature of the fibre drawing process, which leads to the theoretical relations among the structural diameter of the micro-structure fibre, the drawing technical parameter, and the physical constant of the micro-structure fibre material. The theoretic values are basically in agreement with the experimental results.
international conference on communications, circuits and systems | 2006
Zhou Gui-Yao; Hou Lan-Tian; Hou Zhiyun; Li Shu-Guang
This paper describes a novel method of fabrication for glass photonic crystal fibres (GPCF) with die-cast process. The die is made of the heat-resisting alloy steel, whose inner structure matches the GPCFs structure, and the SF6 glass is used as the material of GPCF. The die is vertically put in the vessel with SF6 glass, and the vacuum hose is attached to the top of the die, then put them in the furnace to heat at 870 K together. The die is slowly filled with the softening glass under vacuum condition till it is full. Keep it in the furnace to anneal at a rate of 20 K/h to remove thermal stress that could lead to cracks. The outer tube of the die is taken apart after its temperature is close to room temperature, and the fused glass bundle is etched in an acidic solution to remove the heat-resisting alloy steel rods, and the etched bundle is ready for use as a GPCF preform. The preform is thinned to a fibre. The GPCF is observed the generation of supercontinuum, with the flat plateau in the spectrum of output emission stretching from 400 to 1400 nm by experimental measurement. The transmission loss is 0.2-0.3 dB/m at the wavelength of 420-900 nm
Archive | 2013
Zhou Gui-Yao; Hou Zhiyun; Hou Lan-Tian
Archive | 2013
Zhou Gui-Yao; Hou Zhiyun; Hou Lan-Tian
Archive | 2004
Zhao Guiyao; Hou Zhiyun; Hou Lan-Tian
Archive | 2013
Zhou Gui-Yao; Hou Zhiyun; Hou Lan-Tian
Archive | 2002
Hou Zhiyun; Zhou Gui-Yao; Hao Lantian
Archive | 2016
Zhou Gui-Yao; Hou Zhiyun; Liu Jiantao
Archive | 2016
Zhou Gui-Yao; Hou Zhiyun; Liu Jiantao