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A Dynamical Description on Kapitza-Dirac Effect
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作者 XIONGChun-Le ZHANGQi-Ren 《Communications in Theoretical Physics》 SCIE CAS CSCD 2004年第6X期891-894,共4页
The Kapitza-Dirac effect is investigated in a formalism developed from the formal quantum theory. Nu merical calculations yield good agreement with the experimental results.
关键词 卡毕札-狄拉克效应 形式量子论 自由电子 衍射射束
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Phantom and Quintessence Fields Coupled to Scalar Curvature in General <i>f(R)</i>Gravity Theory
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作者 Xinyou Zhang Yongchang Huang 《Journal of Modern Physics》 2017年第8期1234-1256,共23页
This paper reviews the development of f(R) gravity theory and Phantom and Quintessence fields. Specifically, we present a new general action of f(R) gravity and Phantom and Quintessence fields coupled to scalar curvat... This paper reviews the development of f(R) gravity theory and Phantom and Quintessence fields. Specifically, we present a new general action of f(R) gravity and Phantom and Quintessence fields coupled to scalar curvature. Then, we deduce Euler-Lagrange Equations of different fields, matter tensor and effective matter tensor. Additionally, this paper obtains the general pressure, density and speed sound of the new general field action, and investigates different cosmological evolutions with inflation. Further, this paper investigates a general f(R) gravity theory with a general matter action and obtains the different field equations, general matter tensor and effective matter tensor. Besides, this paper obtains the effective Strong Energy Condition (SEC) and effective Null Energy Condition (NEC). Then, we prove that when f(R) approaches to R, the effective SEC and the effective NEC approach to the usual SEC and the usual NEC, respectively. Finally, this paper presents a general action of f(R) gravity, Quintessence and Phantom fields and their applications. 展开更多
关键词 Theory of f(R) Gravity Dark Energy Sound Speed QUINTESSENCE FIELD PHANTOM FIELD
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Higher-order squeezing of quantum electromagnetic fields and higher-order uncertainty relations in two-mode squeezed states
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作者 李希曾 苏保霞 柴路 《Chinese Physics B》 SCIE EI CAS CSCD 2004年第12期2058-2063,共6页
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