1)根据ANSI FL1在相应的环境中的测量值。如果未明确指示设置,则该值是指最高设置上的发光通量(流明/LM)和照明范围(仪表/m),以及最低设置的电池持续时间(小时/hrs/h)。可以多次使用Boost功能(如果有的话),但仅在短时间内使用。如果灯配备了(a)彩色LED(S),则给出了白光或白色LED的测量值。如果光具有不同的能量模式,则根据“节能模式”进行测量。
摘要:分子灯笼(LN)复合物是用于发展下一代量子技术的有前途的候选者。高对称结构融合了整数自旋LN离子可以产生良好的晶体晶体磁场准两倍基态,即可能作为磁矩的基础的量子两级系统。最近的工作表明,在LN离子周围的协调环境的对称性降低可以在地面双线内产生避免的交叉或时钟过渡,从而导致相干性显着增强。Here, we employ single-crystal high-frequency electron paramagnetic resonance spectroscopy and high-level ab initio calculations to carry out a detailed investigation of the nine-coordinate complexes, [Ho III L 1 L 2 ], where L 1 = 1,4,7,10-tetrakis(2-pyridylmethyl)-1,4,7,10-tetraaza-cyclododecane and L 2 = F - (1)或[MECN] 0(2)。由中性有机配体支架(L 1)施加的伪4倍对称性和顶端阴离子氟化物离子产生一个强轴向各向异性,其中1 m j =±8个地基态dbouptet在1中,其中m j表示j = 8 Spin-Orbital Moment to-Orbital Mistis of-Orbital Moments to to-Orbital Mistis of to-orbital Mistis ot to-orbital Mistis to to 4 kark 4 kaws k 4 kaw cc c c c c c c c c c c c 4 k. c c c c c 4 k 4次。与此同时,异位晶体场相互作用产生了该双重双线内巨大的116.4±1.0 GHz时钟过渡。然后,我们通过用中性MECN替换F-来证明时钟过渡的靶向晶体场工程(2),从而导致时钟过渡频率增加了2.2倍。实验结果与量子化学计算广泛一致。这种可调节性是高度可取的,因为由二阶对磁噪声尺度的敏感性与时钟过渡频率相反。
在基于SESAM的模式模式锁定的半导体激光Yu-Hsin Hsu Hsu(国家Yang-Ming Chiao Tung University)的谐波模式锁定中,谐波模式锁定的动态演变谐波模式锁定的动态演变 and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)谐波模式锁定的动态演变 and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)and Photoluminescence Property of Gold Clusters with Bis(benzo[b]phosphindole)ethane Ligand Teppei Yahagi (Osaka Metropolitan University) Synthesis and Optical Properties of Gold Nanocluster with Organic Radical Ligand Kosei Hayashi (Osaka Metropolitan University) Numerical investigation of launch characteristics in optical vortex laser induced forward transfer Mamoru Tamura (Osaka University) Helical excitations in superfluid helium Yosuke Minowa (Kyoto University) Fabrication of Hydrogel Fibers with Helical Structure via Vortex Laser Photopolymerization Toward Chiral Tissue Engineering Zhuying Zhang (Osaka University) Development of optical manipulation of nanoscale objects for controlling cellular activity Tatsunori Kishimoto (Toyohashi University技术)的两光子制造微观结构由飞秒光涡流横梁Yoshihisa Matsumoto(大阪大都会大学)
余云进 , 谢宇锋 , 杨锦兰 , 等 .基于 “ 热证可灸 ” 理论研究艾灸对胃 热证大鼠肠道微生态的影响 [ J ] .中国中医基础医学杂志 , 2020, 26(10): 1470-1474.YU Yunjin, XIE Yufeng, YANG Jinlan, et al.Study on the effects of moxibustion on intestinal microecology of rats with stomach heat syn- drome based on the theory of "moxibustion can be used on heat syn- drome" [ J ] .J Basic Chin Med, 2020, 26(10): 1470-1474.(in Chinese)
热跃层热能存储是在工厂中恢复废热的最有希望的解决方案之一。本文旨在优化热量储能的形状,以最大程度地减少其环境影响并最大程度地提高其自动效率。参考存储是一种现有的工业高温空气/陶瓷装满床的热存储,称为Ecostock®。用于确定水箱性能的物理模型是一个具有两个方程式的一个维度模型:一个用于传热液,一个用于填充材料。使用生命周期评估通过四个选定的指标分析了环境影响:累积能量需求,全球变暖潜力,非生物耗竭潜力和颗粒物。为了解决此多标准问题,使用了几种充电和环境权重因子,应用了粒子群优化算法。获得了一个帕累托集,并由单个自我或环境优化限制。有利于释放效率减少储罐的体积。然而,储罐的环境足迹增加了:累积能量需求和非生物耗竭潜力的指标较高。储罐的形状随机重量从平方形(环境优化)到锥形形状(自行量优化)演变。