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Evolution and Generation of Dynamics of Two-Mode Squeezed States of Time-Dependent Coupled Boson System
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作者 ZHANG Xue ZHENG Tai-Yu ZHENG Li 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第10期955-960,共6页
The system of the Hamiltonian involving a driving part,a single mode part,and a two-mode squeezedone and a two-mode coupled one is discussed using the Lewis-Riesenfeld invariant theory.The time evolution operatoris ob... The system of the Hamiltonian involving a driving part,a single mode part,and a two-mode squeezedone and a two-mode coupled one is discussed using the Lewis-Riesenfeld invariant theory.The time evolution operatoris obtained.When the initial state is a coherent state,the quantum fluctuation of the system is calculated,and it isdependent on the squeezed part and the two-mode coupled part,but not dependent on the driving one. 展开更多
关键词 two-mode squeezed states lewis Riesenfeld invariant theory time evolution operator
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Vertically aligned γ-Al00H nanosheets on Al foils as flexible and reusable substrates for NH3 adsorption 被引量:1
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作者 Chen Yang Ying Chen +6 位作者 Dan Liu Jinfeng Wang Cheng Chen Jiemin Wang Ye Fan Shaoming Huang Weiwei Lei 《Frontiers of physics》 SCIE CSCD 2018年第4期111-116,共6页
Vertically aligned γ-AlOOH nanosheets (NSs) have been successfully fabricated on flexible Al foils via a solvothermal route without morphology-directing agents. Three different reaction temperature (25, 80, and 1... Vertically aligned γ-AlOOH nanosheets (NSs) have been successfully fabricated on flexible Al foils via a solvothermal route without morphology-directing agents. Three different reaction temperature (25, 80, and 120 ℃) and time (30 min, 45 min, and 24 h) are discussed for the growth period, which efficiently tune the density and size of theγ-AlOOH NSs. Meanwhile, the growth speed of the nanosheets confirms that dominant growth stage is seen in the initial 45 min. Furthermore, the interlayer of the γ-AlOOH NSs displays an average height of 140 nm and superhydrophilicity. By dynamic adsorption, the as- synthesized γ-AlOOH NSs exhibit an outstanding NH3 adsorption capacity of up to 146 mg/g and stably excellent regeneration for 5 cycles. The mechanism of NH3 adsorption on the in-plane of the γ-AlOOH NSs is explained by the Lewis acid/base theory. The H-bond interactions among the NH3 molecules and the edge groups (-OH) further improve the capture ability of the nanosheets. 展开更多
关键词 γ-AlOOH nanosheets NH3 adsorption lewis acid/base theory H bonds interaction
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