Probing the Non-exponential Decay Regime in Open Quantum Systems
arXiv:2211.11619 · doi:10.1103/PhysRevResearch.5.023183
Abstract
The most important law of radioactivity is that of the exponential decay. In the realm of quantum mechanics, however, this decay law is neither rigorous nor fundamental. The deviations from the exponential decay have been observed experimentally at the early stage of a decay process, but there is little evidence for non-exponential behavior at long times. Yet such long-term non-exponentiality is expected theoretically to probe the non-resonant background components of the initial wave function which preserve the structural interference and the memory of how the state was created. In this paper, we propose new observables that can be used for experimental investigations of the post-exponential decay regime, including the decay of threshold resonances, particle correlations in three-body decays, and interference between near-lying resonances. While the specific examples presented in this work pertain to atomic nuclei, the properties of non-exponential decay are generic, i.e., they apply to other many-body open quantum systems, such as hadrons, atoms, molecules, and nanostructures.
10 pages, 7 figures
References in corpus (12)
- Dynamics of Loschmidt echoes and fidelity decay
- Shell Model in the Complex Energy Plane
- Two-proton radioactivity
- Nonexponential quantum decay under environmental decoherence
- Non-exponential and oscillatory decays in quantum mechanics
- Two-proton emission and related phenomena
- Fermion Pair Dynamics in Open Quantum Systems
- Structure and decays of nuclear three-body systems: the Gamow coupled-channel method in Jacobi coordinates
- The Late Time Behavior of False Vacuum Decay: Possible Implications for Cosmology and Metastable Inflating States
- Structures and decay properties of extremely proton-rich nuclei O
- Nucleon-nucleon correlations in the extreme oxygen isotopes
- Formal Aspects of Quantum Decay
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- Description of the proton-decaying 0 resonance of the particle