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34篇 您的检索式:作者名="AVERITT"
    题名 作者 年代 出处 被引量
1Nonlinear terahertz devices utilizing semiconducting plasmonic metamaterials显示文摘The development of responsive metamaterials has enabled the realization of compact tunable photonic devices capable of manipulating the amplitude,polarization,wave vector and frequency of light.Integration of semiconductors into the active regions of metallic resonators is a proven approach for creating nonlinear metamaterials through optoelectronic control of the semiconductor carrier density.Metal-free subwavelength resonant semiconductor structures offer an alternative approach to create dynamic metamaterials.We present InAs plasmonic disk arrays as a viable resonant metamaterial at terahertz frequencies.Importantly,InAs plasmonic disks exhibit a strong nonlinear response arising from electric field-induced intervalley scattering,resulting in a reduced carrier mobility thereby damping the plasmonic response.We demonstrate nonlinear perfect absorbers configured as either optical limiters or saturable absorbers,including flexible nonlinear absorbers achieved by transferring the disks to polyimide films.Nonlinear plasmonic metamaterials show potential for use in ultrafast terahertz(THz)optics and for passive protection of sensitive electromagnetic devices.Huseyin R Seren Jingdi Zhang George R Keiser Scott J Maddox Xiaoguang Zhao Kebin Fan Seth R Bank Xin Zhang Richard D Averitt 2016Light(Science & Applications)2016,5,1:4
2Role of intericosahedral chains on the hardness ofsputtered boron carbide films 显示文摘Jacobsohn L G Averitt R D Wetteland C J 2004Applied Physics Letters2004,84,21:1
3Nanoengineering of optical resonances显示文摘Otdenberg S J Averitt R D Westcott S L 1998Chem Phys Lett1998,288,:1
4Nanoengineering of optical resonances 显示文摘Oldenburg S J Averitt R D Westcott S L 1998China Phys Lett1998,288,:1
5Experimental dem- onstration of frequency agile terahertz metamaterials 显示文摘Chen H T Averitt R D Padilla W J 2008Na- ''ture Photon2008,,2:1
6Terahertz surface plasmon polariton coupling on metallic gratings 显示文摘O'Hara J F Averitt R D Taylor A J 2004Op- tics Express2004,12,25:1
7Sex-basedoutcomes of darunavir-ritonavir therapy: a single-grouptrial 显示文摘Currier J Averitt Bridge D Hagins D 2010Ann Intern Med2010,153,6:1
8Linear Optical Properties of Gold Nanoshells显示文摘 Westcott S L Halas N J 1999Opt Soc Am B1999,16,10:1
9Linear optical properties of gold nanoshells显示文摘Averitt R D Westtcott S L Halas N J 1999J Opt Soc Am(A)1999,16,10:1
10Nanoengineering of optical resonances 显示文摘OLDENBURG S J AVERITT R D WESTCOTr S L 1998Chem Phys Lett1998,288,243:1
11A dual band terahertz metamaterial absorber显示文摘Hu Tao C M Bingham D Pilon Kebin Fan A C Strikwerda D Shrekenhamer W J Padilla Xin Zhang R D Averitt Journal of Physics D: Applied Physics0,,:1
12Plasmon resonance shifts of Au-eoated Au2 S nanoshells: Insight into multicomponent nanoparticle growth显示文摘Averitt R D Sarkar D Halas N J 1997Phys Rev Lett1997,78,22:1
13Terahertz surface plasmon polariton coupling on met allic gratings显示文摘OHARA J F AVERITT R D TAYLOR A J 0,,25:1
14A dual band terahertz metamaterial absorber显示文摘Hu T Bingham C M Pilon D Fan K B Strikwerda A C Shrekenhamer D Padilla W J Zhang X Averitt R D 0,,:1
15显示文摘Oldenburg S J Averitt R D Westcott S L 1998Chem Phys Lett1998,288,:1
16Nanoengineering of optical resonances 显示文摘Oldenburg S J Averitt R D Westcott S L 1998Chem Phys Lett1998,288,:1
17Unambiguous chirp characterization using modified-spectrum autointerferometric correlation and pulse spectrum显示文摘YELLAMPALLE B AVERITT R D TAYLOR A J 0,,19:1
18Unambiguous chirp characterization using modified-spectrum auto-interferometric correlation and pulse spectrum显示文摘Yellampalle B Averitt R D Taylor A J 2006Opt Express2006,14,19:1
19Terahert waveform synthesis via optical rectification of shaped ultrafast laser pulses显示文摘Ahn J Efimov V Averitt R D Taylor A J 2003Opt Express2003,11,20:1
20NCSU’s virtual computing lab:A cloud computing solution 显示文摘Henry E Schaffer Samuel F Averitt Marc I Hoit 2009Computer2009,42,7:1
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