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用狄拉克δ函数近似值法处理光子真空极化的紫外发散问题 被引量:1
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作者 王宗祥 《大学物理》 北大核心 2007年第7期11-14,共4页
用狄拉克δ函数近似值法的扩展规则,取以紫外发散为特征的双光子真空极化(光子自能)系统为例,导出了正规化公式,与文献中由空-时维度法导得的公式相似.公式以(n↑)为正规化参数,与4维动量有相同的量纲.由此进一步确定系统的树枝图及1-... 用狄拉克δ函数近似值法的扩展规则,取以紫外发散为特征的双光子真空极化(光子自能)系统为例,导出了正规化公式,与文献中由空-时维度法导得的公式相似.公式以(n↑)为正规化参数,与4维动量有相同的量纲.由此进一步确定系统的树枝图及1-圈图各自的振幅、相对项振幅及系统的重整化振幅,后者与文献中的完全相同.最后确定了相对项拉氏密度. 展开更多
关键词 量子场相互作用 光子真空极化 紫外发散 狄拉克δ函数
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用狄拉克δ函数近似值法处理费米子自能紫外积分发散问题
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作者 王宗祥 《大学物理》 北大核心 2007年第10期5-8,11,共5页
用狄拉克δ函数近似值法的扩展规则导出了电子自能的正规化公式,其形式与文献中用Pauli-Villars法和空-时维度法所得公式大致相似.同时还推导了重整化自能公式,与文献中的完全相同.最后建立了相对项拉氏密度公式.
关键词 量子场相互作用 费米子自能 紫外发散 狄拉克δ函数
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Superfluidity of Paired Bosons from Correlated Tunneling
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作者 YANG Shi-Jie 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第10期611-614,共4页
We study superfluidity of paired Bosonic atoms in optical lattices. The atoms have strong repulsive on-slte energy. Single atom tunneling is severely suppressed while the atom-pair may co-tunnel by the second order qu... We study superfluidity of paired Bosonic atoms in optical lattices. The atoms have strong repulsive on-slte energy. Single atom tunneling is severely suppressed while the atom-pair may co-tunnel by the second order quantum transition, which induces paired superfluidity as repulsive nearest-neighbor interactions are included. The mean-field phase diagram and low energy excitations are explored for a square lattice system. 展开更多
关键词 SUPERFLUIDITY correlated tunneling PAIRING
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Gravitational Shielding Effect in Gauge Theory of Gravity 被引量:1
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作者 WUNing 《Communications in Theoretical Physics》 SCIE CAS CSCD 2004年第4期567-572,共6页
In 1992,E.E.Podkletnov and R.Nieminen found that under certain conditions,ceramic superconductor with composite structure reveals weak shielding properties against gravitational force.In classical Newton's theory ... In 1992,E.E.Podkletnov and R.Nieminen found that under certain conditions,ceramic superconductor with composite structure reveals weak shielding properties against gravitational force.In classical Newton's theory of gravity and even in Einstein's general theory of gravity,there are no grounds of gravitational shielding effects.But in quantum gauge theory of gravity,the gravitational shielding effects can be explained in a simple and natural way.In quantum gauge theory of gravity,gravitational gauge interactions of complex scalar field can be formulated based on gauge principle.After spontaneous symmetry breaking,if the vacuum of the complex scalar field is not stable and uniform,there will be a mass term of gravitational gauge field.When gravitational gauge field propagates in this unstable vacuum of the complex scalar field,it will decays exponentially,which is the nature of gravitational shielding effects.The mechanism of gravitational shielding effects is studied in this paper,and some main properties of gravitational shielding effects are discussed. 展开更多
关键词 gravitational shielding effect symmetry breaking quantum gravity gauge field
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Classical Gravitational Interactions and Gravitational Lorentz Force
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作者 WU Ning 《Communications in Theoretical Physics》 SCIE CAS CSCD 2005年第5X期883-886,共4页
In quantum gauge theory of gravity, the gravitational field is represented by gravitational gauge field.The field strength of gravitational gauge field has both gravitoelectric component and gravitomagnetic component.... In quantum gauge theory of gravity, the gravitational field is represented by gravitational gauge field.The field strength of gravitational gauge field has both gravitoelectric component and gravitomagnetic component. In classical level, gauge theory of gravity gives classical Newtonian gravitational interactions in a relativistic form. Besides,it gives gravitational Lorentz force, which is the gravitational force on a moving object in gravitomagnetic field The direction of gravitational Lorentz force is not the same as that of classical gravitational Newtonian force. Effects of gravitational Lorentz force should be detectable, and these effects can be used to discriminate gravitomagnetic field from ordinary electromagnetic magnetic field. 展开更多
关键词 gravitational Lorentz force GRAVITY gauge field quantum gravity
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Gravitational Gauge Interactions of Dirac Field
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作者 WUNing 《Communications in Theoretical Physics》 SCIE CAS CSCD 2004年第3期381-384,共4页
Gravitational interactions of Dirac field are studied in this paper. Based on gauge principle, quantum gauge theory of gravity, which is perturbatively renormalizable, is formulated in the Minkowski space-time. In qua... Gravitational interactions of Dirac field are studied in this paper. Based on gauge principle, quantum gauge theory of gravity, which is perturbatively renormalizable, is formulated in the Minkowski space-time. In quantum gauge theory of gravity, gravity is treated as a kind of fundamental interactions, which is transmitted by gravitational gauge field, and Dirac field couples to gravitational field through gravitational gauge covariant derivative. Based on this theory, we can easily explain gravitational phase effect, which has already been detected by COW experiment. 展开更多
关键词 quantum gravity gauge field Dirac field
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Thermal Quantum Discord in Pure Dzyaloshinskii–Moriya Model with Magnetic Field
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作者 李大创 李小曼 曹卓良 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第6期691-694,共4页
We investigate the effects of the directions of Dzyaloshinskii–Moriya(DM) interaction vector and magnetic field on the quantum discord in the pure DM model. For different directions of DM vector, we find that there a... We investigate the effects of the directions of Dzyaloshinskii–Moriya(DM) interaction vector and magnetic field on the quantum discord in the pure DM model. For different directions of DM vector, we find that there are different optimal parameter components of magnetic field. Moreover, we find that the optimal parameter components rules are the same for the Hamiltonian H_1 and H_2. According to the rules, for a certain axial DM vector, we can get the maximal quantum discord by adjusting the direction of the external magnetic field, which is feasible under the current experimental technology. 展开更多
关键词 quantum discord Heisenberg model Dzyaloshinskii–Moriya interaction
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