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Study on the Feltproof of Wool/Cocoon Stripping Blending Fabric
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作者 刘世春 王善元 《Journal of China Textile University(English Edition)》 EI CAS 2000年第4期95-98,共4页
A new method is presented to prevent the wool fabric from shrinking effectively by using cocoon stripping blended with wool fiber. The sericin of cocoon stripping is used as resin to bond the wool fiber together after... A new method is presented to prevent the wool fabric from shrinking effectively by using cocoon stripping blended with wool fiber. The sericin of cocoon stripping is used as resin to bond the wool fiber together after heat setting. The factors affecting the effect of shrinkproofing is heat setting temperature, wool/cocoon stripping blending ratio, cover factor, regain of fabric. Temperature of heat setting and the blending ratio of cocoon stripping are the two key factors. This method does not pollute the environment, and almost has no damage on wool fiber. 展开更多
关键词 WOOL bond COCOON striplings shrinkage SERICIN
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Efficient on-chip terahertz generation and detection with GaN photoconductive emitters
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作者 Can B.Uzundal Qixin Feng +7 位作者 Weichen Tang Chen Hu Collin Sanborn Yoseob Yoon Sudi Chen Jiawei Ruan Steven G.Louie Feng Wang 《Light: Science & Applications》 2025年第8期2327-2334,共8页
Photoconductive emitters for terahertz generation hold promise for highly efficient down-conversion of optical photons because it is not constrained by the Manley-Rowe relation.Existing terahertz photoconductive devic... Photoconductive emitters for terahertz generation hold promise for highly efficient down-conversion of optical photons because it is not constrained by the Manley-Rowe relation.Existing terahertz photoconductive devices,however,faces limits in efficiency due to the semiconductor properties of commonly used GaAs materials.Here,we demonstrate that large bandgap semiconductor GaN,characterized by its high breakdown electric field,facilitates the highly efficient generation of terahertz waves in a coplanar stripline waveguide.Towards this goal,we investigated the excitonic contribution to the electro-optic response of GaN under static electric field both through experiments and first-principles calculations,revealing a robust excitonic Stark shift.Using this electro-optic effect,we developed a novel ultraviolet pump-probe spectroscopy for in-situ characterization of the terahertz electric field strength generated by the GaN photoconductive emitter.Our findings show that terahertz power scales quadratically with optical excitation power and applied electric field over a broad parameter range.We achieved an optical-to-terahertz conversion efficiency approaching 100%within the 0.03–1 THz bandwidth at the highest bias field(116 kV/cm)in our experiment.Further optimization of GaN-based terahertz generation devices could achieve even greater optical-toterahertz conversion efficiencies. 展开更多
关键词 terahertz photoconductive deviceshoweverfaces generation terahertz waves gaas materialsherewe large bandgap semiconductor gancharacterized Gan photoconductive emitters photoconductive emitters terahertz generation Terahertz generation coplanar stripl
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