Generation and Absorption of Photons by a Two-Level Atom Ultrastrongly Coupled to an Electromagnetic Field

IF 1.4 4区 物理与天体物理 Q3 PHYSICS, MULTIDISCIPLINARY
A. V. Kozlovskii
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引用次数: 0

Abstract

Within the Rabi quantum model, it has been shown theoretically that a two-level atom ultrastrongly coupled to an electromagnetic field generates or absorbs photons. Photons can be generated if the field is initially in the vacuum state. Under certain initial states of the atom + field system, the absorption of photons is possible in the field mode in the ultrastrong atom–field coupling regime. If the atom is initially in the ground (unexcited) state and the field is in the vacuum state, photons can be generated under resonance condition ωa ≈ ωf or ξ ≡ ωaf ≈ 1, where ωa and ωf are the atomic transition and field frequencies, respectively, in the ultrastrong coupling regime. At the negative detuning when ξ \( \ll \) 1 or ωa \( \ll \) ωf, Rabi oscillations of the average number of photons \({{\langle \hat {n}\rangle }_{t}}\) with \(0 \leqslant {{\langle \hat {n}\rangle }_{t}} \leqslant {{n}_{{\max }}} \gg 1\) are observed in the case of the ultrastrong coupling with the atom–field coupling constant \(\tilde {g} \equiv {\text{|}}g{\text{|/}}{{\omega }_{{\text{f}}}} \sim 1\); in this case, the population of the excited atomic state is Pe(t) ≈ 0.5. At a large positive detuning when ξ \( \gg \) 1, photons are not generated, i.e., \(\langle \hat {n}\rangle \approx 0\), and the atom remains in the initial state, i.e., Pe(t) ≈ 0. The statistics of photons in the generation regime is nearly chaotic: the variance of photons is much larger than the level of the coherent field state (i.e., is super-Poisson). Field photons are absorbed without the excitation of the atom in the ultrastrong coupling regime in the case of the coherent initial state of the field \((\langle \hat {n}(t = 0\rangle > 0)\) for certain positive detuning values. In this case, the field becomes sub-Poisson.

双能级原子与电磁场的超强耦合对光子的产生和吸收
在拉比量子模型中,理论上已经证明,与电磁场超强耦合的两能级原子会产生或吸收光子。如果场最初处于真空状态,则可以产生光子。在原子+场系统的某些初始态下,在超强原子-场耦合域中,光子在场模式下有可能被吸收。如果原子初始处于基态(非激发态),场处于真空态,则在谐振条件下ωa≈ωf ξ≡ωa/ωf≈1,其中ωa和ωf分别为超强耦合区原子跃迁频率和场频率。当ξ \( \ll \) 1或ωa \( \ll \) ωf为负失谐时,在原子场耦合常数\(\tilde {g} \equiv {\text{|}}g{\text{|/}}{{\omega }_{{\text{f}}}} \sim 1\)的超强耦合下,观测到平均光子数\({{\langle \hat {n}\rangle }_{t}}\)与\(0 \leqslant {{\langle \hat {n}\rangle }_{t}} \leqslant {{n}_{{\max }}} \gg 1\)的拉比振荡;在这种情况下,激发态的居族为Pe(t)≈0.5。当ξ \( \gg \) 1为大正失谐时,光子不产生,即\(\langle \hat {n}\rangle \approx 0\),原子保持在初始状态,即Pe(t)≈0。产生态的光子统计几乎是混沌的:光子的方差远远大于相干场态的水平(即超泊松)。对于某些正失谐值,在场相干初始态\((\langle \hat {n}(t = 0\rangle > 0)\)的情况下,在超强耦合状态下,不需要原子的激发,场光子被吸收。在这种情况下,场变成亚泊松场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JETP Letters
JETP Letters 物理-物理:综合
CiteScore
2.40
自引率
30.80%
发文量
164
审稿时长
3-6 weeks
期刊介绍: All topics of experimental and theoretical physics including gravitation, field theory, elementary particles and nuclei, plasma, nonlinear phenomena, condensed matter, superconductivity, superfluidity, lasers, and surfaces.
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