首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Evaluation of two-photon polarization density matrix of polarization-entangled photon pairs generated through biexciton resonant hyper-parametric scattering
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Evaluation of two-photon polarization density matrix of polarization-entangled photon pairs generated through biexciton resonant hyper-parametric scattering

机译:通过Biexciton谐振超参数散射产生的偏振缠结光子对的两光节偏振密度矩阵的评价

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We have investigated the excitation-power dependence of polarization-entangled photon pairs generated from a CuCl single crystal using biexciton resonant hyper-parametric scattering. The two-photon polarization density matrix of photon pairs generated from a CuCl single crystal maintained at 10 K was measured under different excitation powers. The measured two-photon polarization density matrix, which corresponds to the two-photon polarization state, changes with an increase in the excitation power. The evaluations of the tangle and the linear entropy obtained from the measured density matrix indicate that the two-photon polarization density matrix can be expressed as the mixed state of an ideal state and a totally mixed state, and the mixture ratio of the totally mixed state increases as the excitation density increases. The variations of the density matrix and the mixture ratio with the excitation power originate from the generation of the multiple photon pairs. Furthermore, a numerical calculation considering simultaneous detection efficiency was able to reproduce the experimental results. (c) 2019 Optical Society of America
机译:我们研究了使用Biexciton谐振超参数散射从CuCl单晶产生的极化缠结光子对的激发功率依赖性。在不同的激励功率下测量从维持在10k的CuCl单晶产生的光子对的两光态偏振密度矩阵。测量的双光子偏振密度矩阵,其对应于双光子偏振状态,随着激励力的增加而变化。从测量的密度矩阵获得的缠结和线性熵的评估表明,双光子偏振密度矩阵可以表示为理想状态和完全混合状态的混合状态,以及完全混合状态的混合比随着励磁密度的增加而增加。密度矩阵的变化和与激发功率的混合比源自多重光子对的产生。此外,考虑同时检测效率的数值计算能够再现实验结果。 (c)2019年光学学会

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