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7篇 您的检索式:作者名="Matthias Frisch"
    题名 作者 年代 出处 被引量
1VERNAUZATION1 Modulates Root System Architecture in Wheat and Barley显示文摘Kai P. Voss-Fels Hannah Robinson Stephen R. Mudge Cecile Richard Saul Newman Benjamin Wittkop Andreas Stahl Wolfgang Friedt Matthias Frisch lulian Gabur Anika Miller-Cooper Bradley C. Campbell Alison Kelly Glen Fox Jack Christopher Mandy Christopher Karine Chenu Jerome Franckowiak Emma S. Mace Andrew K. Borrell Howard Eagles David R. Jordan Jose R. Botella Graeme Hammer lan D. Godwin Ben Trevaskis Rod J. Snowdon Lee T. Hickey 2018Molecular Plant2018,11,1:1
2Comparison of Linkage Disequilibrium in Elite European Maize Inbred Lines using AFLP and SSR Markers显示文摘Benjamin Stich Hans P. Maurer Albrecht E. Melchinger Matthias Frisch Martin Heckenberger Jeroen Rouppe Voort Johan Peleman Anker P. S?rensen Jochen C. Reif 2006Molecular Breeding2006,,3:1
3Prediction of single-cross hybrid performance in maize using haplotype blocks associated with QTL for grain yield显示文摘Tobias A. Schrag Hans Peter Maurer Albrecht E. Melchinger Hans-Peter Piepho Johan Peleman Matthias Frisch 2007Theoretical and Applied Genetics2007,,8:1
4Endo- 13-N-acetylglucosaminidase H de-N-glycosylation in a domestic microwave oven: Application to biomarker discovery 显示文摘Elena Frisch Christian Schwedler Matthias Kaup 2013Analytical Biochemistry2013,433,:1
5Correlation between parental transcriptome and field data for the characterization of heterosis in Zea mays L.显示文摘Alexander Thiemann Junjie Fu Tobias A. Schrag Albrecht E. Melchinger Matthias Frisch Stefan Scholten 2010Theoretical and Applied Genetics2010,,2:1
6洋中脊超镁铁岩硫化物矿床的微量元素富集特征:激光剥蚀电感耦合等离子体质谱微区分析显示文摘海底超镁铁岩热液系统所产出的硫化物富集Au、Ag、Cu、Zn、Co和Ni等金属元素使其正逐渐成为海底多金属硫化物找矿勘查的重要对象(Fouquet et al.,2010)。Kairei热液区是印度洋首个被发现的活动热液区,喷口流体化学和围岩地球化学的研究结果均证实了该热液区受到了基底超镁铁岩的影响(Kumagai et al.,2008)。所采集的硫化物富集Cu、Zn、Au、Co和Sn等元素(Wang et al.,2014),王叶剑 韩喜球 Sven Petersen 邱中炎 Matthias Frische 2015矿物学报2015,35,S1:1
7Cavity-assisted ultrafast long-range periodic energy transfer between plasmonic nanoantennas显示文摘Radiationless energy transfer is at the core of diverse phenomena,such as light harvesting in photosynthesis1,energy-transfer-based microspectroscopies2,nanoscale quantum entanglement3 and photonic-mode hybridization4.Typically,the transfer is efficient only for separations that are much shorter than the diffraction limit.This hampers its application in optical communication and quantum information processing,which require spatially selective addressing.Here,we demonstrate highly efficient radiationless coherent energy transfer over a distance of twice the excitation wavelength by combining localized and delocalized5 plasmonic modes.Analogous to the Tavis–Cummings model,two whispering-gallery-mode antennas6 placed in the foci of an elliptical plasmonic cavity7 fabricated from single-crystal gold plates act as a pair of oscillators coupled to a common cavity mode.Time-resolved two-photon photoemission electron microscopy(TR 2P-PEEM)reveals an ultrafast long-range periodic energy transfer in accordance with the simulations.Our observations open perspectives for the optimization and tailoring of mesoscopic energy transfer and long-range quantum emitter coupling.Martin Aeschlimann Tobias Brixner Mirko Cinchetti Benjamin Frisch Bert Hecht Matthias Hensen Bernhard Huber Christian Kramer Enno Krauss Thomas H Loeber Walter Pfeiffer Martin Piecuch Philip Thielen 2017Light(Science & Applications)2017,6,1:0
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