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Coherent control of nuclear forward scattering

机译:核前向散射的相干控制

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The possibility to control the coherent decay of resonant excitations in nuclear forward scattering is investigated. By changing abruptly the direction of the nuclear hyperfine magnetic field, the coherent scattering of photons can be manipulated and even completely suppressed via quantum interference effects between the nuclear transition currents. The efficiency of the coherent decay suppression and the dependence of the scattered light polarization on the specific switching parameters is analyzed in detail. Using a sophisticated magnetic switching sequence involving four rotations of the hyperfine magnetic field, two correlated coherent decay pulses with different polarizations can be generated out of one excitation, providing single-photon entanglement in the keV regime. The verification of the generated entanglement by testing a single-particle version of Bell's inequality in an X-ray optics experimental setup is put forward.
机译:研究了控制核向前散射中共振激发相干衰减的可能性。通过突然改变核超细磁场的方向,可以通过核跃迁电流之间的量子干扰效应来控制甚至完全抑制光子的相干散射。详细分析了相干衰减抑制的效率以及散射光偏振对特定开关参数的依赖性。使用涉及超精细磁场四次旋转的复杂磁开关序列,可以从一次激发中产生两个具有不同极化的相关相干衰减脉冲,从而在keV态下提供单光子纠缠。提出了通过在X射线光学实验装置中测试贝尔不等式的单粒子形式来验证产生的纠缠。

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