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Weak-Coupling Theory for Semiclassical Periodically Driven Two-Level Systems: Beyond Rotating-Wave Approximation 被引量:2
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作者 YANG Xiao-Xue WU Ying 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第2X期339-342,共4页
We present a weak-coupling theory of semiclassical periodically driven two-level systems. The explicit analytical approximating solution is shown to reproduce highly accurately the exact results well beyond the regime... We present a weak-coupling theory of semiclassical periodically driven two-level systems. The explicit analytical approximating solution is shown to reproduce highly accurately the exact results well beyond the regime of the rotating-wave approximation. 展开更多
关键词 periodically driven two-level systems weak-coupling theory beyond rotating-wave approximation
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Weak-Coupling Theory for Low-Frequency Periodically Driven Two-Level Systems
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作者 CHEN Ai-Xi HUANG Ke-Lin WANG Zhi-Ping 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第8期493-496,共4页
We generalize the Wu-Yang strong-coupling theory to solve analytically periodically driven two-level systems in the weak-coupling and low-frequency regimes for single- and multi-period periodic driving of continuous-w... We generalize the Wu-Yang strong-coupling theory to solve analytically periodically driven two-level systems in the weak-coupling and low-frequency regimes for single- and multi-period periodic driving of continuous-wave-type and pulse-type including ultrashort pulses of a few cycles.We also derive a general formula of the AC Stark shift suitable for such diverse situations. 展开更多
关键词 two-level system weak-coupling ultrashort pulse
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Analytical Solution of Weak-Coupling Periodically Driven Two-Level System
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作者 ZHOU Qing-Ping FANG Mao-Fa 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第4期1025-1028,共4页
We present an approximate analytical solution to periodically driven two-level system in the weak-coupling regime. The analytical solution is in good agreement with the exact numerical solution in resonance and near r... We present an approximate analytical solution to periodically driven two-level system in the weak-coupling regime. The analytical solution is in good agreement with the exact numerical solution in resonance and near resonance cases when Ω 〈 0.3ωa with Ω and ωa denoting the Rabi and transition frequencies respectively. 展开更多
关键词 periodically driven two-level systems analytical solution weak-coupling regime
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Review of cavity optomechanics in the weak-coupling regime: from linearization to intrinsic nonlinear interactions 被引量:6
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作者 XIONG Hao SI LiuGang +2 位作者 LV XinYou YANG XiaoXue WU Ying 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2015年第5期16-28,共13页
Recently, cavity optomechanics has become a rapidly developing research field exploring the coupling between the optical field and mechanical oscillation. Cavity optomechanical systems were predicted to exhibit rich a... Recently, cavity optomechanics has become a rapidly developing research field exploring the coupling between the optical field and mechanical oscillation. Cavity optomechanical systems were predicted to exhibit rich and nontrivial effects due to the nonlinear optomechanical interaction. However, most progress during the past years have focused on the linearization of the optomechanical interaction, which ignored the intrinsic nonlinear nature of the optomechanical coupling. Exploring nonlinear optomechanical interaction is of growing interest in both classical and quantum mechanisms, and nonlinear optomechanical interaction has emerged as an important new frontier in cavity optomechanics. It enables many applications ranging from single-photon sources to generation of nonclassical states. Here, we give a brief review of these developments and discuss some of the current challenges in this field. 展开更多
关键词 cavity optomechanics nonlinear interactions weak-coupling regime radiation pressure
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Image interpretation of weak-coupling N-mer adsorbate's STM system 被引量:1
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作者 HUANG Xintang, Ql Shouren, LI Xinjiao and LI Yongping1 Department of Physics, Central China Normal University, Wuhan 430070, China Department of Solid State Electronics, Huazhong University of Science and Technology, Wuhan 430074, China 2. Department of Physics, University of Science and Technology of China, Hefei 230026, China 《Chinese Science Bulletin》 SCIE EI CAS 1997年第5期371-374,共4页
Up to now, there have been many indistinctive points in the image interpretation of scanning tunnelhng microscopy (STM) system, and the problems have attracted almost all STM scientists’ attention. In 1992, Kenkre pr... Up to now, there have been many indistinctive points in the image interpretation of scanning tunnelhng microscopy (STM) system, and the problems have attracted almost all STM scientists’ attention. In 1992, Kenkre proposed the new programme which describes the behaviour of the electrons moving in the STM tunnelling by the method of exciton dynamics, and the programme not only breaks through the restrictions of Tersoff-Hamann theory, but also can be applied conveniently to discussing the effects of the tip structure, adsorbate structure, substrate structure, temperature, tunneling voltage, and the degree of coherence of elec- 展开更多
关键词 weak-coupling N-mer ADSORBATES STM image interpretation exciton dynamics method.
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Ground-state energy of weak-coupling polarons in quantum rods 被引量:1
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作者 王翠桃 肖景林 赵翠兰 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2009年第7期7-10,共4页
The Hamiltonian of the quantum rod (QR) with an ellipsoidal boundary is given after a coordinate transformation. Using the linear-combination operator and unitary transformation methods, the vibrational frequency an... The Hamiltonian of the quantum rod (QR) with an ellipsoidal boundary is given after a coordinate transformation. Using the linear-combination operator and unitary transformation methods, the vibrational frequency and the ground-state energy of weak-coupling polarons are obtained. Numerical results illustrate that the vibrational frequency increases with the decrease of the effective radius R0 of the ellipsoidal parabolic potential and the aspect ratio e of the ellipsoid, and that the ground-state energy increases with the decrease of the effective radius R0 and the electron-LO-phonon coupling strength α. In addition, the ground-state energy decreases with increasing aspect ratio e within 0 〈 e 〈 1 and reaches a minimum when e = 1, and then increases with increasing e for e 〉 1. 展开更多
关键词 quantum rod weak-coupling linear-combination operator POLARON
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Excellent thermoelectric performance in weak-coupling molecular junctions with electrode doping and electrochemical gating 被引量:1
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作者 Dan Wu Xuan-Hao Cao +5 位作者 Pin-Zhen Jia Yu-Jia Zeng Ye-Xin Feng Li-Ming Tang Wu-Xing Zhou Ke-Qiu Chen 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2020年第7期78-88,共11页
Excellent thermoelectric performance in molecular junctions requires a high power factor, a low thermal conductance, and a maximum figure of merit(ZT) near the Fermi level. In the present work, we used density functio... Excellent thermoelectric performance in molecular junctions requires a high power factor, a low thermal conductance, and a maximum figure of merit(ZT) near the Fermi level. In the present work, we used density functional theory in combination with a nonequilibrium Green’s function to investigate the thermoelectric performance of carbon chain-graphene junctions with both strong-coupling and weak-coupling contact between the electrodes and the molecules. The results revealed that a room temperature ZT of 4 could be obtained for the weak-coupling molecular junction, approximately one order of magnitude higher than that reached by the strong-coupling junction. The reason for this is that strong interfacial scattering suppresses most of the phonon modes in weak-coupling systems, resulting in ultralow phonon thermal conductance. The influence of electrode width,electrode doping, and electrochemical gating on the thermoelectric performance of the weak-coupling system was also investigated, and the results revealed that an excellent thermoelectric performance can be obtained near the Fermi level. 展开更多
关键词 THERMOELECTRIC molecular junctions weak-coupling electrochemical gating density functional theory
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Design and Analysis of a Wireless Power Transmission System with Magnetic Coupling Resonance in the Weak-coupling Region 被引量:2
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作者 Dawei Song Fengdong Shi +1 位作者 Shuailong Dai Lai Liu 《Chinese Journal of Electrical Engineering》 CSCD 2019年第4期51-60,共10页
The magnetically coupled resonant wireless power transfer(MCR-WPT)system for implantable medical devices has gradually become one of the research hotspots.The transmission characteristics of the system in weak-couplin... The magnetically coupled resonant wireless power transfer(MCR-WPT)system for implantable medical devices has gradually become one of the research hotspots.The transmission characteristics of the system in weak-coupling regions are of research significance.The mathematical model of the system's transmission characteristics is established by equivalent circuit theory.Several key factors that affect the transmission characteristics of the system are obtained,to include the self-inductance of the coil,the mutual inductance between the coils,and the load resistance.A magnetically coupled resonant wireless power transfer system is designed.A method of coil design is proposed.The transmission efficiency of the system in the weak-coupling region is improved by optimizing the design of the coil.Simulation and experimental results exhibited good consistency.The results show that the transmission performance of the system in the weak-coupling area is improved.This work provides guidance and practical significance for the research of the MCR-WPT system with implantable medical equipment. 展开更多
关键词 Wireless power transfer frequency splitting weak-coupling region coil design
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Mobility matrix of a weakly coupled parallel multi-DIM isolator based on axial force solution
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作者 Li Desheng Yu Jiangtao +2 位作者 Huang Baowang Li Zhanxian Wang Zhijun 《High Technology Letters》 EI CAS 2020年第3期335-341,共7页
A mobility matrix modeling strategy based on axial force solution for a weakly coupled parallel multi-dimentional(multi-DIM)isolator is proposed.Mobility power flow and transmissibility through the isolator are derive... A mobility matrix modeling strategy based on axial force solution for a weakly coupled parallel multi-dimentional(multi-DIM)isolator is proposed.Mobility power flow and transmissibility through the isolator are derived from the mobility matrix.Comparison between simulation and experimental results shows the correctness of the proposed modeling strategy. 展开更多
关键词 mobility matrix weak-coupling parallel multi-dimentional(multi-DIM)isolator axial force mobility power flow
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