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Generation of two-color polarization-entangled optical beams with a self-phase-locked two-crystal optical parametric oscillator

机译:用自锁相双晶体光参量振荡器产生两色偏振纠缠光束

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摘要

A device to generate polarization-entangled light in the continuous-variable regime is introduced. It consists of an optical parametric oscillator with two type-II phase-matched nonlinear crystals orthogonally oriented, associated with birefringent elements for adjustable linear coupling. We give in this paper a theoretical study of its classical and quantum properties. It is shown that two optical beams with adjustable frequencies and well-defined polarization can be emitted. The Stokes parameters of the two beams are entangled. The principal advantage of this setup is the possibility to directly generate polarization-entangled light without the need of mixing four modes on beamsplitters as required in current experimental setups. This device opens up different directions for the study of light-matter interfaces and a generation of multimode nonclassical light and higher dimensional phase space.
机译:介绍了一种在连续可变范围内产生偏振纠缠光的装置。它由一个光学参量振荡器组成,该光学参量振荡器具有两个正交取向的II型相位匹配非线性晶体,并与用于可调线性耦合的双折射元件相关联。我们在本文中对其经典和量子性质进行理论研究。结果表明,可以发射两个频率可调且偏振明确的光束。纠缠两个光束的斯托克斯参数。这种设置的主要优点是可以直接产生偏振纠缠的光,而无需按照当前实验设置中的要求在分束器上混合四种模式。该装置为研究光-物质界面以及产生多模非经典光和高维相空间开辟了不同的方向。

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