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7篇 您的检索式:作者名="LEONARDO LM"
    题名 作者 年代 出处 被引量
1The activity of Caspase-3-like proteases is elevated during the development of colorectal carcinorna显示文摘Leonardos I Butler LM Hewett PJ 1999Cancer Lett1999,143,1:1
2The activity of caspase-3-like proteases is elevated during the development of colorectal carcinoma显示文摘Leonardos L Butler LM Hewett PJ 0,,:1
3MnSOD gene polymorphism association with steroid-dependent cancer 显示文摘CLAUDIA GB LEONARDO LM NADIMA V 2009PatholOncolRes2009,15,1:1
4The activity of Caspase-3 like proteases is elevated during the development of colorectal carcinoma显示文摘Leonardos L Butler LM Hewett PJ 1999Cancer Lett1999,143,5:1
5The activity of caspase-3-like proteases is elevated during the development of colorectal carcinoma显示文摘LEONARDOS L BUTLER LM HEWETT PJ 1999Cancer Lett1999,143,1:1
6The activity of caspase-3-1ike proteases is elevated during lhe development of colorectal c~-5rsgma 显示文摘Leonardos L Buffer LM Hewett PJ 1999J Cancer Lett1999,143,1:1
7Radiative suppression of exciton-exciton annihilation in a two-dimensional semiconductor显示文摘Two-dimensional(2D)semiconductors possess strongly bound excitons,opening novel opportunities for engineering light-matter interaction at the nanoscale.However,their in-plane confinement leads to large non-radiative exciton–exciton annihilation(EEA)processes,setting a fundamental limit for their photonic applications.In this work,we demonstrate suppression of EEA via enhancement of light-matter interaction in hybrid 2D semiconductor-dielectric nanophotonic platforms,by coupling excitons in WS2 monolayers with optical Mie resonances in dielectric nanoantennas.The hybrid system reaches an intermediate light-matter coupling regime,with photoluminescence enhancement factors up to 102.Probing the exciton ultrafast dynamics reveal suppressed EEA for coupled excitons,even under high exciton densities>10^(12)cm^(−2).We extract EEA coefficients in the order of 10^(−3),compared to 10^(−2)for uncoupled monolayers,as well as a Purcell factor of 4.5.Our results highlight engineering the photonic environment as a route to achieve higher quantum efficiencies,for low-power hybrid devices,and larger exciton densities,towards strongly correlated excitonic phases in 2D semiconductors.Luca Sortino Merve Gülmüs Benjamin Tilmann Leonardo de S.Menezes Stefan A.Maier 2023Light(Science & Applications)2023,12,9:0
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