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    朗讯

    朗讯

    Lucent
    企业
    5,831论文总数
    45.8万引用总数

    Lucent Technologies(朗讯科技公司)是一家致力于为全球最大的通信服务提供商设计和提供网络的企业。

    论文量&引用量时间轴

    机构学者

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    Loren N. Pfeiffer
    Loren N. Pfeiffer
    Pfeiffer Group, Molecular Beam Epitaxy Lab, Department of Electrical and Computer Engineering, Materials Institute, Princeton University
    论文:219引用:0H-index:0
    Kw West
    Kw West
    Alcatel Lucent
    论文:212引用:0H-index:0
    Federico Capasso
    Federico Capasso
    John A. Paulson School of Engineering and Applied Sciences, Harvard University
    论文:109引用:0H-index:0
    Christopher Doerr
    Christopher Doerr
    Aloe Semiconductor
    论文:76引用:0H-index:0
    Sethumadhavan Chandrasekhar
    Sethumadhavan Chandrasekhar
    Bell Labs
    论文:65引用:0H-index:0
    John Rogers
    John Rogers
    Department of Materials Science and Engineering, McCormick School of Engineering, Northwestern University
    论文:65引用:0H-index:0
    Zhenan Bao
    Zhenan Bao
    Department of Chemical Engineering, Stanford University;Department of Materials Science and Engineering, Stanford University
    论文:64引用:0H-index:0
    Alfred Y. Cho
    Alfred Y. Cho
    Alcatel-Lucent Bell Labs
    论文:62引用:0H-index:0
    Jan Hendrik Schon
    Jan Hendrik Schon
    Lucent Technologies Bell Labs
    论文:55引用:0H-index:0

    论文(5831)

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    1Editorial Welcome to the IEEE Journal of Selected Topics in Quantum Electronics (JSTQE) Special Issue on Hybrid Integration for Silicon Photonics (HISP)
    Patrick Lo Guo-Qiang,Juejun Hu,Luo Xian-Shu,Joyce Poon,Dries Van Thourhout,Fengnian Xia

    Presents the introductory editorial for this issue of the publication.

    2022IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS(2022)
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    2Magnetic Characterization of CoFe2O4 Nanoparticles
    Lawes G., Naughton B.,Clark D. R., Ramirez A. P.,Seshadri R.

    We have synthesized CoFe2O4 nanoparticles with length scales ranging from 3.5 nm to 14.2 nm. We have characterized the magnetic properties of these samples using both DC and AC magnetization, and find some slightly anomalous behavior in two of the samples. We tentatively attribute these features to interactions between the magnetic nanoparticles. There is a great deal of interest in understanding the physical basis for the magnetic properties of nanoparticles in order to facilitate their incorporation into a wide range of commercial applications. By studying the magnetic characteristics of CoFe2O4 nanoparticles using bulk measurement techniques, we are able to probe the properties of both the individual nanoparticles and interactions in these systems. In this report, we discuss our magnetic characterization of a series of CoFe2O4 nanoparticles grown using an aqueous co-precipitation technique. In addition to DC magnetization at fixed fields and temperatures, we also investigated the magnetic properties using AC susceptibility measurements. The long term goal of this research is to understand interparticle interactions in magnetic nanoparticles.

    2021MRS Online Proceedings Library(2021)
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    3Special Technical Communities: A 10-Year Retrospective
    David Alan Grier,Dejan Milojicic,Sorel Reisman,John Walz

    Computer hosts a virtual roundtable with four past IEEE Computer Society presidents to discuss the original rationale for creating special technical communities and their future.

    2021COMPUTER(2021)
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    4Single Crystal Growth of Cuprates from Hydroxide Fluxes
    Sunshine S. A.,Siegrist T.,Schneemeyer L. F.

    Barium and potassium hydroxide have been investigated as fluxes for the growth of cuprate single crystals. The relatively high solubility of transition metals and lanthanoids in these salt fluxes at moderate temperatures allows significant lowering of the growth temperatures required for many phases. Also, phases not stable at high temperatures become accessible. Two new cuprates have been prepared in the Ba–Ca–Cu–O and Ba–Y–Cu–O systems from a Ba(OH)2 • H2O flux. The compounds Ba3(Y0.23Cu0.77)2O5.78 and Ba3(Ca0.24Cu0.76)2O4.43 crystallize in a tetragonal (space group I4/mmm) oxygen deficient Sr3Ti2O7-type structure with lattice parameters a = 4.069(2) Å, 4.022(1) Å and c = 21.61(2) Å, 21.63(2) Å, respectively. The compound (Ba0.92Sr0.08) (Ca0.38Cu0.62)O2.1 crystallizes with a doubled perovskite unit cell along all three axes, a = 8.116(4) Å. In addition, single crystals of Ba2YCu3O7–d have been prepared from a KOH flux at 750 °C.

    2020Journal of Materials Research(2020)引用:9
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    5Barmak, Calvert, Speck, and Tung to Chair 1999 MRS Spring Meeting
    Barmak Katayun, Calvert Paul, Speck James S.,Tung Raymond T.

    The meeting comprises 34 symposia covering a range of topics including traditional and new, along with five potential tutorials.New symposia will be presented in such areas as magnetic, semiconducting

    2020MRS Bulletin(2020)
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    罗格斯新泽西州立大学合作论文 51
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    斯坦福大学合作论文 36

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