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14篇 您的检索式:作者名="THIO W"
    题名 作者 年代 出处 被引量
1Determinants of directionality in lambda site-specific recombination 显示文摘 Yin S Thio LL 1984Cell1984,39,32:1
2Linearization of the Lorenz system显示文摘Li Chunbiao SPROTT J C THIO W 2015Physics Letters A2015,5,10:1
3Bistability in a hyperchaotic system with a line equilibrium显示文摘LI C B SPROTT J C THIO W 2014Journal of experimental and theoreticalPhysics2014,118,3:1
4Control of optical transmission through metals perforated with subwavelength hole arrays显示文摘Tae Jin Kim Tineke Thio Ebbesen T W 1999Optics Letters1999,24,4:1
5Linearization of the Lorenz system显示文摘LI C B SPROTF J C THIO W 2015Physics Letters A2015,379,1011:1
6Electrical conductivity of individual carbon nanotubes 显示文摘EBBESEN T W LEZEC H J HIURA H BENNETT J W GHAEMIH F THIO T 1996Nature1996,382,6586:1
7Subwavelength tunneling of electromagnetic waves显示文摘 Lezec H J Ghaemi H F Thio T Wolff P A 1998Nature (London)1998,391,:1
8Electrical Conductivity of Individual Carbon Nanotubes显示文摘Ebbesen T W Lezec H J Hiura H Bennett J W Ghaemi H F Thio T 1996Nature1996,382,6586:1
9Strongly enhanced optical transmission through subwavelength holes in metal films 显示文摘Thio T Lezee H J Ebbesen T W 2000Physiea B2000,279,:1
10Strongly enhanced optical transmission through subwavelength holes in metal films显示文摘Thio T Lezec H J Ebbesen J W 2000Physica B2000,279,:1
11Extraordinary opticaltransmission through sub-wavelength hole arrays显示文摘EBBESEN T W LEZEC H F THIO T 1998Nature1998,391,:1
12Giant optical transmission of sub-wavelength apertures:,physics and applications显示文摘THIO T LEZEC H J EBBESEN T W 2002Nanotechnology2002,13,3:1
13Antisymmetric exchange and its influence on the magnetic structure and conductivity of La2CuO4 显示文摘THIO T T THURSTON R PREYER N W 1988Physical Review B1988,38,:1
14Innovative approaches towards an economic fusion reactor显示文摘Nuclear fusion potentially offers a clean;environmentally friendly and intrinsically safe energy source with an abundant fuel supply.Magnetic fusion energy research is approaching a new era of fusion power reactor design and construction planning.New physics understanding and powerful predictive tools have become available for improving fusion performance,developing and optimizing various magnetic confinement concepts.Emerging transformative enabling technologies can potentially mitigate and transform some present physics challenges from the possibly insurmountable to the potentially solvable.Houyang Guo Francis Y C Thio Michl W Binderbauer Richard J Buttery Thomas R Jarboe Rajesh Maingi John S Sarff Peter C Stangeby Derek A Sutherland Mickey R Wade Michael C Zarnstorff 2020National Science Review2020,7,2:0
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