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Photoic crystal nanobeam cavity devices for on-chip integrated silicon photonics 被引量:2
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作者 Daquan Yang xiao Liu +3 位作者 xiaogang Li Bing Duan Aiqiang Wang yunfeng xiao 《Journal of Semiconductors》 EI CAS CSCD 2021年第2期40-50,共11页
Integrated circuit(IC)industry has fully considered the fact that the Moore’s Law is slowing down or ending.Alternative solutions are highly and urgently desired to break the physical size limits in the More-than-Moo... Integrated circuit(IC)industry has fully considered the fact that the Moore’s Law is slowing down or ending.Alternative solutions are highly and urgently desired to break the physical size limits in the More-than-Moore era.Integrated silicon photonics technology exhibits distinguished potential to achieve faster operation speed,less power dissipation,and lower cost in IC industry,because their COMS compatibility,fast response,and high monolithic integration capability.Particularly,compared with other on-chip resonators(e.g.microrings,2D photonic crystal cavities)silicon-on-insulator(SOI)-based photonic crystal nanobeam cavity(PCNC)has emerged as a promising platform for on-chip integration,due to their attractive properties of ultra-high Q/V,ultra-compact footprints and convenient integration with silicon bus-waveguides.In this paper,we present a comprehensive review on recent progress of on-chip PCNC devices for lasing,modulation,switching/filting and label-free sensing,etc. 展开更多
关键词 PCNC integrated silicon photonics More-than-Moore LAB-ON-A-CHIP hybrid devices
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Effects of Roudoukou-8 San Extract on Hydrogen Peroxide Induced Cardiomyocyte Injury 被引量:1
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作者 yunfeng xiao Yuanyan ZHANG +1 位作者 Wenyan LI Yuhua WANG 《Medicinal Plant》 CAS 2018年第5期101-106,110,共7页
[Objectives] To study the effects of Roudoukou-8 San extract on hydrogen peroxide( H_2O_2) induced cardiomyocyte injury of rats and explore its action mechanism. [Methods] The cardiomyocytes of neonatal rats were isol... [Objectives] To study the effects of Roudoukou-8 San extract on hydrogen peroxide( H_2O_2) induced cardiomyocyte injury of rats and explore its action mechanism. [Methods] The cardiomyocytes of neonatal rats were isolated and cultured,and the H_2O_2 induced cardiomyocyte injury model was established. Methyl thiazolyl tetrazolium( MTT) assay was used to detect the protective effects of Roudoukou-8 San extract on H_2O_2 induced cardiomyocyte. The effects of Roudoukou-8 San on cardiomyocyte morphology were observed under inverted microscope. The contents of lactate dehydrogenase( LDH),creatine kinase( CK) and aspartate aminotransferase( AST) in cell culture medium were determined by automatic biochemical instrument; the levels of malondialdehyde( MDA),superoxide dismutase( SOD) and nitric oxide( NO) in the cells were detected by kit method. The apoptotic morphology of cardiomyocytes was observed by Hoechst fluorescence staining.Cell apoptosis were measured by Annexin V and PI double staining and flow cytometer. [Results]100 μmol/L of H_2O_2 acting 2 h could cause about 50% of cardiomyocyte injury. H_2O_2 model group showed increased cell gap,decreased cell count,cell cytoplasmic vacuoles and other obvious damages. Compared with H_2O_2 model group,in Roudoukou-8 San extract dose groups,cardiomyocyte morphology showed different degrees of improvement,Roudoukou-8 San extract can significantly reduce the content of LDH,CK and AST in H_2O_2 injured myocardial cell culture solution,significantly reduce content of MDA and NO in H_2O_2 injured myocardial cells,increase the SOD activity,and significantly inhibit the apoptosis of H_2O_2 injured myocardial cells. [Conclusions]Through improving the cell survival status,increasing the cell viability,reducing oxidative stress injury,inhibiting inflammatory responses,and inhibiting apoptosis,Roudoukou-8 San extract can improve the state of H_2O_2 induced cardiomyocyte injury,so as to protect H_2O_2 injured myocardial cells. 展开更多
关键词 Roudoukou-8 SAN MYOCARDIAL cells Hydrogen PEROXIDE (H 2O 2) OXIDATIVE stress Apoptosis
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纳光电子与光子芯片研究:发展与挑战 被引量:3
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作者 龚旗煌 罗先刚 +6 位作者 刘伍明 戴道锌 李涛 肖云峰 唐华 何杰 刘克 《中国科学基金》 CSSCI CSCD 北大核心 2023年第3期410-417,共8页
光子芯片被认为是“后摩尔时代”信息领域发展的核心技术之一。纳光电子学的发展为实现更高性能和更高集成度的光子芯片技术奠定了基础。同时,光子芯片对于突破电子芯片“卡脖子”的现实问题具有重要战略意义,有助于推动我国在未来光电... 光子芯片被认为是“后摩尔时代”信息领域发展的核心技术之一。纳光电子学的发展为实现更高性能和更高集成度的光子芯片技术奠定了基础。同时,光子芯片对于突破电子芯片“卡脖子”的现实问题具有重要战略意义,有助于推动我国在未来光电信息产业的国际竞争中走出“缺芯”困境,并取得先发优势。基于国家自然科学基金委员会第312期“双清论坛”,本文总结了我国在纳光电子与光子芯片研究方面的重大需求,回顾了纳光电子与光子芯片领域近年来通过物理、材料、信息、制造等学科交叉融合所取得的主要进展和成就,凝炼了该领域未来5~10年的重大关键科学问题,探讨了前沿研究方向和科学基金资助战略。 展开更多
关键词 纳光电子 光子芯片 基础研究 科学问题
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