arXiv · 2512.13817
Fractional power-law decay in the spontaneous emission of a two-level system
Abstract
It has been shown for various systems that the decay rate of an unstable quantum system deviates from exponential behavior in short- and long-time regimes associated with memory effects. In particular, it is widely believed that in the short-time regime, the decay is quadratic, inducing the quantum Zeno effect, in which the decay is suppressed by rapidly repeated measurements. In our study, we find that when the environment of the unstable system has an energy spectrum with a lower bound but without an upper one, the decay rate in both regimes is scaled in terms of the spatial dimension and the exponent of the energy dispersion of the environment. Surprisingly, we find that in the short-time regime the decay exhibits fractional scaling, which leads to a quantum Zeno effect with a different scaling of the Zeno time.
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Hiroki Nakabayashi, Hayato Kinkawa, Takano Taira, Naomichi Hatano. 2025-12-15. Fractional power-law decay in the spontaneous emission of a two-level system. https://arxiv.org/abs/2512.13817
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