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Interaction between Two Stopped Light Pulses

机译:两个停止的轻脉冲之间的相互作用

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The efficiency of a nonlinear optical process is proportional to the interaction time. We report a scheme of alloptical switching based on two motionless light pulses via the effect of electromagnetically induced transparency. One pulse was stopped as the stationary light pulse (SLP) and the other was stopped as stored light. The time of their interaction via the medium can be prolonged and, hence, the optical nonlinearity is greatly enhanced. Using a large optical density (OD) of 190, we achieved a very long interaction time of 6.9 μs. This can be analogous to the scheme of trapping light pulses by an optical cavity with a Q factor of 8×10~9. With the approach of using moving light pulses in the best situation, a switch can only be activated at 2 photons per atomic absorption cross section. With the approach of employing a SLP and a stored light pulse, a switch at only 0.56 photons was achieved and the efficiency is significantly improved. Moreover, the simulation results are in good agreement with the experimental data and show that the efficiency can be further improved by increasing the OD of the medium. Our work advances the technology in quantum information manipulation utilizing photons.
机译:非线性光学过程的效率与相互作用时间成比例。我们通过电磁诱导的透明度的效果,基于两个一系列动态光脉冲报告了Alloptice开关的方案。作为静止光脉冲(SLP)停止一个脉冲,另一个脉冲被停止为储存的光。通过培养基的相互作用的时间可以延长,因此,光学非线性大大提高。使用190的大光密度(OD),我们实现了非常长的相互作用时间为6.9μs。这可以类似于光腔捕获光脉冲的方案,该光腔具有8×10〜9的Q因子。利用在最佳情况下使用移动光脉冲的方法,只能在每个原子吸收横截面上以2个光子激活开关。利用采用SLP的方法和存储的光脉冲,实现了仅0.56光子的开关,并且效率显着提高。此外,模拟结果与实验数据吻合良好,并表明通过增加介质的OD可以进一步提高效率。我们的工作进步了利用光子的量子信息操纵技术。

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