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Zero point energy of composite particles: The medium effects

机译:复合粒子零点能量:中等效应

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We analyze the zero point energy of composite particles (or resonances) which are dynamically created from relativistic fermions. We compare the zero point energies in medium to the vacuum one, taking into account the medium modification of the constituent particles. Treating composite particles as if quasiparticles, their zero point energies contain the quadratic and logarithmic UV divergences even after the vacuum subtraction. The coefficients of these divergences come from the difference between the vacuum and in-medium fermion propagators. We argue that such apparent divergences can be cancelled by consistently using fermion propagators to compute the quasi-particle contributions as well as their interplay, provided that the self-energies of the constituents at large momenta approach to the vacuum ones sufficiently fast. In the case of quantum chromodynamics, mesons and baryons, which may be induced or destroyed by medium effects, yield the in-medium divergences in the zero point energies, but the divergences are assembled to cancel with those from the quark zero-point energy. This is particularly important for unified descriptions of hadronic and quark matter which may be smoothly connected by the quark-hadron continuity.
机译:我们分析复合颗粒(或共振)的零点能量,其从相对论的胎儿动态地产生。我们考虑到组成颗粒的培养基改性,将介质中的零点能量与培养基进行比较。处理复合颗粒的QuasiPartics,它们的零点能量甚至在真空减法之后,即使在真空减法之后也包含二次和对数UV分歧。这些分歧的系数来自真空和中非光纤传播者之间的差异。我们认为,通过持续使用FERMION传播者来计算这些表观分歧,以计算准粒子贡献以及它们的相互作用,规定了成分的自能量在大的动量下足够快地进入真空吸尘器。在量子色力动力学的情况下,可以被中等效应诱导或破坏的胶位和放塞尔在零点能量中产生中介质,但是分流组装以取消夸克零点能量的那些。这对于统一描述的统一和夸克物质的统一描述尤为重要,这可以通过夸克 - 强子连续性顺利连接。

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