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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Vavilov-Cherenkov radiation when cosmic rays pass through the relic photon gas and when fast charged particles traverse an optical laser beam
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Vavilov-Cherenkov radiation when cosmic rays pass through the relic photon gas and when fast charged particles traverse an optical laser beam

机译:当宇宙射线穿过残留的光子气体并且快速带电粒子穿过光学激光束时,会发生Vavilov-Cherenkov辐射

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摘要

Using a new [9, 10] quantum theory of Vavilov-Cherenkov radiation (VCR) based on Abraham's theory, we show that a threshold VCR effect can be excited by the relic photon gas when relativistic charged cosmic-ray particles with gamma aeyen gamma(th) ae 1.9 x 10(10) (where gamma(-2) = 1-v (2)/c (2), v is the particle speed, and c is the speed of light in a vacuum) pass through it. This is compatible with the well-known GZK cutoff [7, 8] at gamma ae 10(11). We have obtained the condition gamma > gamma(th) ae 2.1 x 10(2) for the appearance of VCR when a sufficiently fast charged particle (an electron, a proton, or a nucleus) passes through intense laser radiation. This condition ensures that VCR can be observed experimentally (e.g., on the Large Hadron Collider) without invoking any additional conditions required from the currently existing estimate of gamma th > 8.8 x 10(4) [13] based on the now universally accepted quantum theory of VCR, which follows from Minkowski's theory (and which gives an estimate of gamma > 10(21) when excited by the relic photon gas).
机译:使用基于亚伯拉罕理论的Vavilov-Cherenkov辐射(VCR)的新[9,10]量子理论,我们表明,当相对论性带电的宇宙射线粒子带有伽玛aeyenγ( th)ae 1.9 x 10(10)(其中gamma(-2)= 1-v(2)/ c(2),v是粒子速度,c是真空中的光速)通过。这与在γae 10(11)处众所周知的GZK截止[7,8]兼容。当足够快的带电粒子(电子,质子或原子核)通过强激光辐射时,对于VCR的出现,我们获得了条件gamma> gamma(th)ae 2.1 x 10(2)。此条件确保可以通过实验(例如在大型强子对撞机上)观察到VCR,而无需调用基于目前公认的量子理论的现有γ8.8> 10(4)[13]估计值所需的任何其他条件。 VCR的变化,它遵循Minkowski的理论(并给出了由遗留光子气体激发时伽马> 10(21)的估计值)。

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