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4篇 您的检索式:作者名="D.Averitt"
    题名 作者 年代 出处 被引量
1Silk‐Based Conformal, Adhesive, Edible Food Sensors显示文摘HuTao Mark A.Brenckle MiaomiaoYang JingdiZhang MengkunLiu Sean M.Siebert Richard D.Averitt Manu S.Mannoor Michael C.McAlpine John A.Rogers David L.Kaplan Fiorenzo G.Omenetto 2012Adv Mater2012,,8:1
2Metamaterial Silk Composites at Terahertz Frequencies显示文摘HuTao Jason J.Amsden Andrew C.Strikwerda KebinFan David L.Kaplan XinZhang Richard D.Averitt Fiorenzo G.Omenetto 2010Adv Mater2010,,32:1
3Nonlinear terahertz metamaterial perfect absorbers using GaAs[Invited]显示文摘We investigate the nonlinear response of terahertz(THz) metamaterial perfect absorbers consisting of electric split ring resonators on GaAs integrated with a polyimide spacer and gold ground plane. These perfect absorbers on bulk semi-insulating GaAs are characterized using high-field THz time-domain spectroscopy. The resonance frequency redshifts 20 GHz and the absorbance is reduced by 30% as the incident peak field is increased from 30 to 300 kV/cm. The nonlinear response arises from THz field driven interband transitions and intervalley scattering in the GaAs. To eliminate the Fresnel losses from the GaAs substrate, we design and fabricate a flexible metamaterial saturable perfect absorber. The ability to create nonlinear absorbers enables appealing applications such as optical limiting and self-focusing.Xiaoguang Zhao Jingdi Zhang Kebin Fan Guangwu Duan Grace D.Metcalfe Michael Wraback Xin Zhang Richard D.Averitt 2016Photonics Research2016,4,3:0
4Voltage-tunable dual-layer terahertz metamaterials显示文摘This paper presents the design,fabrication,and characterization of a real-time voltage-tunable terahertz metamaterial based on microelectromechanical systems and broadside-coupled split-ring resonators.In our metamaterial,the magnetic and electric interactions between the coupled resonators are modulated by a comb-drive actuator,which provides continuous lateral shifting between the coupled resonators by up to 20μm.For these strongly coupled split-ring resonators,both a symmetric mode and an anti-symmetric mode are observed.With increasing lateral shift,the electromagnetic interactions between the split-ring resonators weaken,resulting in frequency shifting of the resonant modes.Over the entire lateral shift range,the symmetric mode blueshifts by~60 GHz,and the anti-symmetric mode redshifts by~50 GHz.The amplitude of the transmission at 1.03 THz is modulated by 74%;moreover,a 180°phase shift is achieved at 1.08 THz.Our tunable metamaterial device has myriad potential applications,including terahertz spatial light modulation,phase modulation,and chemical sensing.Furthermore,the scheme that we have implemented can be scaled to operate at other frequencies,thereby enabling a wide range of distinct applications.Xiaoguang Zhao Kebin Fan Jingdi Zhang George R.Keiser Guangwu Duan Richard D.Averitt Xin Zhang 2016Microsystems & Nanoengineering2016,2,1:0
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