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9篇 您的检索式:作者名="Mimi HUANG"
    题名 作者 年代 出处 被引量
1Piezoresistive pressure sensor with high sensitivity for medical application using peninsula-island structure显示文摘Tingzhong XU Hongyan WANG Yong XIA Zhiming ZHAO Mimi HUANG Jiuhong WANG Libo ZHAO Yulong ZHAO Zhuangde JIANG 2017Frontiers of Mechanical Engineering2017,12,4:1
2Variability of Atlantic Meridional Overturning Circulation in FGOALS-g2显示文摘The variability of Atlantic Meridional Overturning Circulation(AMOC) in the pre-industrial control experiment of the Flexible Global Ocean–Atmosphere–Land System model, Grid-point Version 2(FGOALS-g2) was investigated using the model outputs with the most stable state in a 512-yr time window from the total 1500-yr period of the experiment. The period of AMOC in FGOALS-g2 is double peaked at 20 and 32 years according to the power spectrum, and 22 years according to an auto-correlation analysis, which shows very obvious decadal variability. Like many other coupled climate models, the decadal variability of AMOC in FGOALS-g2 is closely related to the convection that occurs in the Labrador Sea region. Deep convection in the Labrador Sea in FGOALS-g2 leads the AMOC maximum by 3–4 years. The contributions of thermal and haline effects to the variability of the convection in three different regions [the Labrador, Irminger and Greenland–Iceland– Norwegian(GIN) Seas] were analyzed for FGOALS-g2. The variability of convection in the Labrador and Irminger Seas is thermally dominant, while that in the colder GIN Seas can be mainly attributed to salinity changes due to the lower thermal expansion. By comparing the simulation results from FGOALS-g2 and 11 other models, it was found that AMOC variability can be attributed to salinity changes for longer periods(longer than 35 years) and to temperature changes for shorter periods.HUANG Wenyu WANG Bin LI Lijuan DONG Li LIN Pengfei YU Yongqiang ZHOU Tianjun LIU Li XU Shiming XIA Kun PU Ye WANG Lu LIU Mimi SHEN Si HU Ning WANG Yong SUN Wenqi DONG Fang 2014Advances in Atmospheric Sciences2014,31,1:1
3A model of community-based festivalimage显示文摘Huang J Z Li Mimi Cai L A 2010International Journal of Hospitality Management2010,29,2:1
4A model of community-based festival image显示文摘Huang J Z Li Mimi Cai L P 2010International Journal of Hospitality Management2010,29,2:1
5Improved refractory wound healing with administration of acidic fibroblast growth factor in diabetic rats显示文摘Liyun Xie Meiling Zhang Baijun Dong Mimi Guan Meifei Lu Zhifeng Huang Hongchang Gao Xiaokun Li 2011Diabetes Research and Clinical Practice2011,,:1
6Bound states in the continuum in all-dielectric metasurfaces with scaled lattice constants显示文摘Bound states in the continuum(BICs)have emerged as an efficient tool for trapping light at the nanoscale,promising several exciting applications in photonics.Breaking the structural symmetry has been proposed as an effective way of exciting quasiBICs(QBICs)and generating high-Q resonances.Herein,we demonstrate that QBICs can be excited in an all-dielectric metasurface by scaling the lattice of the metasurface,causing translational symmetry breaking.The corresponding BICs arise from band folding from the band edge to the Γ point in the first Brillouin zone.Multipole analysis reveals that the toroidal dipole dominates these QBICs.Furthermore,scaling the lattice along different directions provides additional freedom for tailoring QBICs,enabling polarization-dependent or-independent QBICs.In addition,this allows the realization of two QBICs at different wavelengths using plane-wave illumination with different polarizations on the metasurface.We experimentally demonstrated the existence of these BICs by fabricating silicon metasurfaces with scaled lattices and measuring their transmission spectra.The vanished resonant linewidth identifies BICs in the transmission spectrum,and the QBICs are characterized by highQ Fano resonances with the Q-factor reaching 2000.Our results have potential applications in enhancing light-matter interaction,such as laser,nonlinear harmonic generation,and strong coupling.Mimi Zhou Shaojun You Lei Xu Menghui Fan Jing Huang Wenbin Ma Mingzhe Hu Shengyun Luo Mohsen Rahmani Ya Cheng Lin Li Chaobiao Zhou Lujun Huang Andrey E.Miroshnichenko 2023Science China(Physics,Mechanics & Astronomy)2023,66,12:0
7Nut and peanut butter consumption and risk of prostate cancer in the NIH-AARP diet and health study显示文摘Dear Editor,Prostate cancer is the second most common cancer among men worldwide and leading cancer in incidence among men in the United States(US).In 2018,the US had over 190,000 new prostate cancer cases,accounting for almost 1 in 5 new male cancer diagnoses[1].A recent review of dietary factors in relation to prostate cancer risk did not find evidence regarding nut consumption as neither a risk nor protective factor,though it has been hypothesized to be associated with a decreased cancer risk through multi-ple mechanisms[2].Mimi Ton Leah M.Ferrucci Stephanie J.Weinstein Maryam Hashemian Demetrius Albanes Jiaqi Huang 2022Cancer Communications2022,42,1:0
8Numerical Study of Interaction Efficiency for a 170GHz Megawatt-Level Coaxial-Gyrotron显示文摘The beam-wave interaction efficiency of a 170GHz megawatt-level corrugated coaxial-gyrotron operating with TE_(31,12) mode was studied numerically. According to the self-consistent nonlinear theory, the efficiencies of two types of coaxial resonator were calculated and compared. Taking into account electronic velocity spread and cavity wall resistivity, the beam-wave interactions of improved cavity were investigated. The relationships between efficiency and magnetic field, voltage, current, beam radius, velocity ratio, and parameters of groove are presented. The results show that the voltage and magnetic field have great influence on efficiency, but the current and velocity spread do slightly. The optimized geometry parameters can improve efficiency, reduce the impact of velocity spread on efficiency, and achieve around 48.6% electronic efficiency and 1.7MW output power at 5% velocity spread and 6.896×10^(-8) Ωm resistivity.QIN Mimi YANG Kuo LUO Wenguang LUO Yong HUANG Yong 2016Chinese Journal of Electronics2016,25,5:0
9Advances in high-performance MEMS pressure sensors:design,fabrication,and packaging显示文摘Pressure sensors play a vital role in aerospace,automotive,medical,and consumer electronics.Although microelectromechanical system(MEMS)-based pressure sensors have been widely used for decades,new trends in pressure sensors,including higher sensitivity,higher accuracy,better multifunctionality,smaller chip size,and smaller package size,have recently emerged.The demand for performance upgradation has led to breakthroughs in sensor materials,design,fabrication,and packaging methods,which have emerged frequently in recent decades.This paper reviews common new trends in MEMS pressure sensors,including minute differential pressure sensors(MDPSs),resonant pressure sensors(RPSs),integrated pressure sensors,miniaturized pressure chips,and leadless pressure sensors.To realize an extremely sensitive MDPS with broad application potential,including in medical ventilators and fire residual pressure monitors,the“beam-membrane-island”sensor design exhibits the best performance of 66μV/V/kPa with a natural frequency of 11.3 kHz.In high-accuracy applications,silicon and quartz RPS are analyzed,and both materials show±0.01%FS accuracy with respect to varying temperature coefficient of frequency(TCF)control methods.To improve MEMS sensor integration,different integrated“pressure+x”sensor designs and fabrication methods are compared.In this realm,the intercoupling effect still requires further investigation.Typical fabrication methods for microsized pressure sensor chips are also reviewed.To date,the chip thickness size can be controlled to be<0.1 mm,which is advantageous for implant sensors.Furthermore,a leadless pressure sensor was analyzed,offering an extremely small package size and harsh environmental compatibility.This review is structured as follows.The background of pressure sensors is first presented.Then,an in-depth introduction to MEMS pressure sensors based on different application scenarios is provided.Additionally,their respective characteristics and significant advancements are analyzed and summarized.Finally,development trends of MEMS pressure sensors in different fields are analyzed.Xiangguang Han Mimi Huang Zutang Wu Yi Gao Yong Xia Ping Yang Shu Fan Xuhao Lu Xiaokai Yang Lin Liang Wenbi Su Lu Wang Zeyu Cui Yihe Zhao Zhikang Li Libo Zhao Zhuangde Jiang 2023Microsystems & Nanoengineering2023,9,6:0
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