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1. The performance of photonic cube nanoantenna | |||
ZHOU Yantao,JIAO Rongzhen | |||
Physics 09 October 2016 | |||
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Abstract:In the progress of improving the performance of single photon source for the quantum communication network, efficient coupling of the emitted light from the nano-emitter to photonic circuits is challenging. Nanoantenna can change the emission performance of single photon source. We put a nano-cube aside the single photon emitter as a reflector, and investigate the influence of the material and the side length of nano-cube on the emission properties of cube nanoantenna. And we change the emitter direction by changing the distance of the dipole emitter and nano-cube. | |||
TO cite this article:ZHOU Yantao,JIAO Rongzhen. The performance of photonic cube nanoantenna[OL].[ 9 October 2016] http://en.paper.edu.cn/en_releasepaper/content/4706239 |
2. Modeling study on the momentum and heat/mass transfer characteristics of an argon plasma jet issuing into air surroundings and interacting with a counter-injected argon jet | |||
WANG Haixing,CHEN Xi,Li Heping | |||
Physics 19 January 2011 | |||
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Abstract:Modeling study is performed to reveal the momentum and heat/mass transfer characteristics of a turbulent or laminar plasma reactor consisting of an argon plasma jet issuing into ambient air and interacting with a co-axially counter-injected argon jet. The turbulence-enhanced combined-diffusion-coefficient method is employed to treat the diffusion of argon in the argon-air mixture for the turbulent regimes. It is shown that there exists a quench layer with steep temperature gradients inside the reactor and the location and shape of the quench layer are dependent on the momentum flux ratio of the plasma jet to the counter-injected cold gas. There exists a high argon concentration or even 'air-free' channel along the reactor axis. | |||
TO cite this article:WANG Haixing,CHEN Xi,Li Heping. Modeling study on the momentum and heat/mass transfer characteristics of an argon plasma jet issuing into air surroundings and interacting with a counter-injected argon jet[OL].[19 January 2011] http://en.paper.edu.cn/en_releasepaper/content/4407611 |
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