Transformation of coherent states of the electromagnetic field to quasi-Fock states

V. Zakharov
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Abstract

The possibility of a practically total reduction of quantum photon fluctuations in cw laser radiation is discussed. This effect appears as a result of two-photon radiation absorption using a resonance transition in atoms excited from the ground state to the upper level, relaxing to the other states. For this case the possibility of induced two-photon emission is excluded, that is, the source of additional photon number fluctuations in a field mode.1 In this process the Fock states with the photon number n ≥ 2 are continuously reduced from the coherent state of the excited field. For the large time values of interaction the Fock states |n = 0 > and |n = 1> remain in the field. The effect of spin orientations of photons of the excited field on the quantum noise reduction process for the two-photon absorption by atoms on the transitions between the S → S and S → D terms is analyzed. The possibility of transformation of coherent and thermal fields (λ ≃ 6022 Å and λ = 5787 Å) into quasi-Fock states, as a result of its two-photon resonance absorption by Na homogeneous vapor, is considered.
电磁场相干态到准fock态的变换
讨论了连续波激光辐射中量子光子涨落实际上完全减少的可能性。这种效应的出现是双光子辐射吸收的结果,利用原子从基态激发到高能级的共振跃迁,放松到其他状态。在这种情况下,排除了诱导双光子发射的可能性,即场模式中附加光子数波动的来源在此过程中,光子数n≥2的Fock态从激发场的相干态不断地减少。当相互作用的时间值较大时,Fock态|n = 0 >和|n = 1>留在场中。分析了激发场光子自旋方向对原子吸收双光子量子降噪过程中S→S和S→D项跃迁的影响。考虑了纳米蒸汽双光子共振吸收导致相干场和热场(λ λ = 6022 Å和λ = 5787 Å)转变为准fock态的可能性。
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