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Feasibility studies of the polarization of photons beyond the optical wavelength regime with the J-PET detector

机译:使用J-PET探测器对超出光波长范围的光子极化的可行性研究

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摘要

J-PET is a detector optimized for registration of photons from the electron–positron annihilation via plastic scintillators where photons interact predominantly via Compton scattering. Registration of both primary and scattered photons enables to determinate the linear polarization of the primary photon on the event by event basis with a certain probability. Here we present quantitative results on the feasibility of such polarization measurements of photons from the decay of positronium with the J-PET and explore the physical limitations for the resolution of the polarization determination of 511 keV photons via Compton scattering. For scattering angles of about 82 (where the best contrast for polarization measurement is theoretically predicted) we find that the single event resolution for the determination of the polarization is about 40 (predominantly due to properties of the Compton effect). However, for samples larger than ten thousand events the J-PET is capable of determining relative average polarization of these photons with the precision of about few degrees. The obtained results open new perspectives for studies of various physics phenomena such as quantum entanglement and tests of discrete symmetries in decays of positronium and extend the energy range of polarization measurements by five orders of magnitude beyond the optical wavelength regime.
机译:J-PET是一种优化的检测器,用于通过塑料闪烁体对电子-正电子an灭产生的光子进行配准,在这些闪烁体中,光子主要通过康普顿散射进行相互作用。初级光子和散射光子的配准使得能够以一定的概率逐个事件地确定初级光子的线性极化。在这里,我们介绍了利用J-PET从正电子衰变中对光子进行偏振测量的可行性的定量结果,并探索了通过康普顿散射法确定511keV光子的偏振分辨率的物理限制。对于约82个 (理论上预测了偏振测量的最佳对比度),我们发现用于确定偏振的单事件分辨率约为40 (主要归因于康普顿效应的性质)。但是,对于大于一万个事件的样本,J-PET能够以大约几度的精度确定这些光子的相对平均偏振。获得的结果为各种物理现象的研究开辟了新的前景,例如量子纠缠和正电子衰变中离散对称性的测试,并将偏振测量的能量范围扩大了光学波长范围之外的五个数量级。

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