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Quantum coherence and non-Markovianity of an atom in a dissipative cavity under weak measurement
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作者 刘禹 邹红梅 方卯发 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第1期258-262,共5页
Quantum coherence and non-Markovianity of an atom in a dissipative cavity under weak measurement are investigated in this work. We find that: the quantum coherence obviously depends on the initial atomic state, the s... Quantum coherence and non-Markovianity of an atom in a dissipative cavity under weak measurement are investigated in this work. We find that: the quantum coherence obviously depends on the initial atomic state, the strength of the weak measurement and its reversal, the atom-cavity coupling constant and the non-Markovian effect. It is obvious that the weak measurement effect protects the coherence better. The quantum coherence is preserved more efficiently for larger atom- cavity coupling. The stronger the non-Markovian effect is, the more slowly the coherence reduces. The quantum coherence can be effectively protected by means of controlling these physical parameters. 展开更多
关键词 quantum coherence non-Markovianty dissipative cavity
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Modulating quantum Fisher information of qubit in dissipative cavity by coupling strength
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作者 林丹萍 刘禹 邹红梅 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第11期390-396,共7页
By using the non-Markovian master equation, we investigate the effect of the cavity and the environment on the quantum Fisher information(QFI) of an atom qubit system in a dissipation cavity. We obtain the formulae ... By using the non-Markovian master equation, we investigate the effect of the cavity and the environment on the quantum Fisher information(QFI) of an atom qubit system in a dissipation cavity. We obtain the formulae of QFI for two different initial states and analyze the effect of the atom–cavity coupling and the cavity–reservoir coupling on the QFI.The results show that the dynamic behavior of the QFI is obviously dependent on the initial atomic states, the atom–cavity coupling, and the cavity–reservoir coupling. The stronger the atom–cavity coupling, the quicker the QFI oscillates, and the slower the QFI decreases. In particular, the QFI will tend to be a stable value rather than zero if the atom–cavity coupling is large enough. On the other hand, the smaller the cavity–reservoir coupling, the stronger the non-Markovian effect, and the slower the QFI decays. In other words, choosing the best parameter can improve the accuracy of the parameter estimation.In addition, the physical explanation of the dynamic behavior of the QFI is given by means of the QFI flow. 展开更多
关键词 quantum Fisher information parameter estimation dissipative cavity
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Atom dynamical dissipation in the laser cavity with quasimode
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作者 姜文英 赵志敏 +2 位作者 田甜 郑丽 郑泰玉 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第6期366-368,共3页
In this paper we study the atom dissipation effect in a laser cavity. The cavity field mode is described by the Fox- Li quasimode due to the leakiness of the cavity. Our results show that the atom decay rate versus th... In this paper we study the atom dissipation effect in a laser cavity. The cavity field mode is described by the Fox- Li quasimode due to the leakiness of the cavity. Our results show that the atom decay rate versus the decay rate of the quasimode is a Lorentz type. Effects of the atom-cavity detuning as well as cavity size are also discussed. 展开更多
关键词 quasimode dissipative cavity decay rate
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Single photon transport properties in coupled cavity arrays nonlocally coupled to a two-level atom in the presence of dissipation 被引量:2
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作者 海莲 谭磊 +2 位作者 冯金山 徐文斌 王彬 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第2期257-261,共5页
We discuss the effects of dissipation on the behavior of single photon transport in a system of coupled cavity arrays, with the two nearest cavities nonlocally coupled to a two-level atom. The single photon transmissi... We discuss the effects of dissipation on the behavior of single photon transport in a system of coupled cavity arrays, with the two nearest cavities nonlocally coupled to a two-level atom. The single photon transmission amplitude is solved exactly by employing the quasi-boson picture. We investigate two different situations of local and nonlocal couplings, respectively. Comparing the dissipative case with the nondissipative one reveals that the dissipation of the system increases the middle dip and lowers the peak of the single photon transmission amplitudes, broadening the line width of the transport spectrum. It should be noted that the influence of the cavity dissipation to the single photon transport spectrum is asymmet- ric. By comparing the nonlocal coupling with the local one, one can find that the enhancement of the middle dip of single photon transmission amplitudes is mostly caused by the atom dissipation and that the reduced peak is mainly caused by the cavity dissipation, no matter whether it is a nonlocal or local coupling case. Whereas in the nonlocal coupling case, when the coupling strength gets stronger, the cavity dissipation has a greater effect on the single photon transport spectrum and the atom dissipation affection becomes weak, so it can be ignored. 展开更多
关键词 single photon transport dissipative coupled cavity arrays dissipative two-level atom local and nonlocal couplings
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Effect of cavity dissipation on the emission spectrum of an atom interacting with a field in the dispersive approximation
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作者 王海军 高云峰 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第1期337-342,共6页
The emission spectrum of a two-level atom interacting dispersively with a single mode radiation field in the dissipative cavity is investigated. A general expression for the emission spectrum is derived. The numerical... The emission spectrum of a two-level atom interacting dispersively with a single mode radiation field in the dissipative cavity is investigated. A general expression for the emission spectrum is derived. The numerical results for the initial field in coherent state are calculated. It is found that the spectrum structure is influenced significantly by the cavity damping constant k, and the spectrum structure is dependent on the interaction time r when the cavity dissipation is present. Only one peak located at wa appears in the atomic spectra for larger T. 展开更多
关键词 emission spectrum cavity dissipation two-level atom
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Continuous variable entanglement generation in coupled cavities
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作者 潘桂侠 肖瑞杰 周玲 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第1期98-103,共6页
We investigate continuous variable entanglement produced in two distant coupled cavities, in which two four-level atoms are driven by classical fields respectively. Under the large detuning condition, an effective Ham... We investigate continuous variable entanglement produced in two distant coupled cavities, in which two four-level atoms are driven by classical fields respectively. Under the large detuning condition, an effective Hamiltonian containing the square of the creation (annihilation) operator of the cavity field is derived. Due to the nonlinearity, entanglement formally created by the beam splitter type interaction is transformed into the nondegenerate parametric down conversion type. Employing the operator algebraic method, we study the time evolution of the entanglement condition, and show that the system provides us an advantage in achieving a larger photon number with better entanglement. We also discuss the dissipation of the cavities affecting the entanglement. 展开更多
关键词 continuous variable entanglement coupled cavities nondegenerate parametric down conversion cavity dissipation
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