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6篇 您的检索式:作者名="Jason Lynch"
    题名 作者 年代 出处 被引量
1How Climate and Vegetation Influence the fire Regime of the Alaskan Boreal Biome: The Holocene Perspective显示文摘Feng Sheng Hu Linda B. Brubaker Daniel G. Gavin Philip E. Higuera Jason A. Lynch T. Scott Rupp Willy Tinner 2006Mitigation and Adaptation Strategies for Global Change2006,,4:1
2FOCUS: A pilot study for national-scale critical loads development in the United States显示文摘Tamara F. Blett Jason A. Lynch Linda H. Pardo Cindy Huber Richard Haeuber Richard Pouyat 2013Environmental Science and Policy2013,,:1
3HPLC analysis of plant DNA methylation: a study of critical methodological factors显示文摘Jason W. Johnston Keith Harding David H. Bremner Graham Souch Jon Green Paul T. Lynch Brian Grout Erica E. Benson 2005Plant Physiology and Biochemistry2005,,9:1
4Dissolution rates of three high explosive compounds:TNT,RDX and HMX显示文摘Jason C Lynch James M Brannon Joseph J Delfino 2002Chemosphere2002,47,:1
5Direct and Indirect Measurement of Patient Radiation Exposure during Endovascular Aortic Aneurysm Repair显示文摘Dustin J. Weiss Iraklis I. Pipinos G. Mathew Longo Thomas G. Lynch Frank J. Rutar Jason M. Johanning 2008Annals of Vascular Surgery2008,,6:1
6Dynamics of self-hybridized exciton–polaritons in 2D halide perovskites显示文摘Excitons,bound electron–hole pairs,in two-dimensional hybrid organic inorganic perovskites(2D HOIPs)are capable of forming hybrid light-matter states known as exciton-polaritons(E–Ps)when the excitonic medium is confined in an optical cavity.In the case of 2D HOIPs,they can self-hybridize into E–Ps at specific thicknesses of the HOIP crystals that form a resonant optical cavity with the excitons.However,the fundamental properties of these self-hybridized E–Ps in 2D HOIPs,including their role in ultrafast energy and/or charge transfer at interfaces,remain unclear.Here,we demonstrate that>0.5µm thick 2D HOIP crystals on Au substrates are capable of supporting multiple-orders of self-hybridized E–P modes.These E–Ps have high Q factors(>100)and modulate the optical dispersion for the crystal to enhance sub-gap absorption and emission.Through varying excitation energy and ultrafast measurements,we also confirm energy transfer from higher energy E–Ps to lower energy E–Ps.Finally,we also demonstrate that E–Ps are capable of charge transport and transfer at interfaces.Our findings provide new insights into charge and energy transfer in E–Ps opening new opportunities towards their manipulation for polaritonic devices.Surendra B.Anantharaman Jason Lynch Christopher E.Stevens Christopher Munley Chentao Li Jin Hou Hao Zhang Andrew Torma Thomas Darlington Francis Coen Kevin Li Arka Majumdar PJames Schuck Aditya Mohite Hayk Harutyunyan Joshua R.Hendrickson Deep Jariwala 2024Light(Science & Applications)2024,13,1:0
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