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Vacuum instability and pair nucleation in a dissipative medium

机译:耗散介质中的真空不稳定性和成核对

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We present a systematic and interdisciplinary treatment of the problem of spontaneous nucleation of particle-antiparticle pairs in a (2+1)-dimensional system, due to a static and uniform electromagnetic-like held in the presence of quantum dissipation. We present a direct derivation of the Caldeira-Leggett type of mechanism for quantum dissipation within the context of string theory, pointing out the differences between the physical situation in which vacuum decay can occur in a dissipative medium and that of a relativistic string theory giving rise to the Born-Infeld effective action. We then evaluate in detail the particle-antiparticle pair production rate in e dissipative medium. The discussion is specialized to the case in which a background periodic potential is also present, a situation giving rise to interesting resonances between nucleation and lattice-parameter length scales. The theory of dissipative pair nucleation in a periodic potential is worked out in detail, implementing a renormalization-group-ype solution of the problem of quantum dynamics in the presence of a dissipation-driven localization transition which interferes with the effect of the driving electric-like field. The calculation is adapted to take into account also the possible Coulomb-like particle-antiparticle attraction. We hint at a possible application of our theory to the problem of the decay of a supercurrent in a superconducting thin film due to vortex-antivortex nucleation in the presence of a pinning lattice. [References: 27]
机译:由于存在量子耗散的静态且均匀的电磁波,我们提出了一种系统和跨学科的解决方案,用于在(2 + 1)维系统中对粒子-反粒子对的自发成核问题。在弦理论的背景下,我们提出了量子消散的Caldeira-Leggett类型机制的直接推导,指出了在耗散介质中可能发生真空衰减的物理情况与产生相对论的弦论的物理情况之间的差异对Born-Infeld采取有效行动。然后,我们详细评估了在耗散性介质中的粒子-反粒子对生产率。讨论专门针对其中还存在背景周期性电势的情况,这种情况引起了形核和晶格参数长度标尺之间有趣的共振。详细研究了周期电势中的耗散对成核理论,在存在耗散驱动的局部跃迁的情况下实现了量子动力学问题的重归一化组ype解,该耗散驱动的局域跃迁干扰了驱动电势的影响。像场。该计算被适配为还考虑可能的库仑样颗粒-反颗粒吸引。我们暗示了我们的理论在超导薄膜中的超电流衰减问题的可能应用,该超导薄膜由于存在钉扎晶格的涡流-反涡流成核作用。 [参考:27]

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