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New approach to low energy virtual Compton scattering and generalized polarizabilities of the nucleon

机译:低能虚拟康普顿散射和核子广义极化率的新方法

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Virtual Compton scattering off the nucleon (VCS) is studied in the regime of low energy of the outgoing real photon. This regime allows one to directly access the generalized polarizabilities of the nucleon in a VCS experiment. In the derivation of the low energy theorem for VCS that exists in the literature, the low energy limit taken for virtual initial photons does not match on that for real photons, when one approaches the initial photon’s mass shell. While this problem has for a long time been attributed to the nonanalyticity of the Compton amplitude with respect to the photon virtuality, I demonstrate that it is merely due to an ill-defined low energy limit for VCS, on one hand, and to a particular way of constructing the VCS amplitude, used in the literature, on the other. I provide a uniform description of low energy Compton scattering with real and virtual photons by defining a Lorentz-covariant operator sub-basis for Compton scattering in that regime, which has six independent structures. Correspondingly, six new generalized polarizabilities are introduced in the Breit frame. These polarizabilities are defined as continuous functions of the photon virtuality and at the real photon point match onto the nucleon polarizabilities known from real Compton scattering.
机译:在传出的实际光子的低能状态下研究了从核子(VCS)散射的虚拟康普顿。这种机制使人们可以直接在VCS实验中访问核子的广义极化率。在文献中存在的VCS低能定理的推导中,当一个虚拟初始光子接近初始光子的质量壳时,虚拟初始光子所采取的低能量极限与实际光子所采取的低能量极限不匹配。尽管这个问题已长期归因于康普顿振幅相对于光子虚拟度的非解析性,但我证明,一方面,这仅是由于VCS的低能量限制不明确造成的,而且是由于另一方面,在文献中使用了构造VCS幅度的方法。通过定义具有六种独立结构的康普顿散射的洛伦兹协变算子子基,我对真实和虚拟光子的低能康普顿散射进行了统一描述。相应地,在Breit框架中引入了六个新的广义极化率。这些极化率定义为光子虚拟度的连续函数,并且在实际光子点上与从实际康普顿散射已知的核子极化率匹配。

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