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First clear evidence of quantum chaos in the bound states of an atomic nucleus

Authors :
Muñoz, L.
Molina, R. A.
Gómez, J. M. G.
Heusler, A.
Source :
Phys. Rev. C 95, 014317 (2017)
Publication Year :
2016

Abstract

We study the spectral fluctuations of the $^{208}$Pb nucleus using the complete experimental spectrum of 151 states up to excitation energies of $6.20$ MeV recently identified at the Maier-Leibnitz-Laboratorium at Garching, Germany. For natural parity states the results are very close to the predictions of Random Matrix Theory (RMT) for the nearest-neighbor spacing distribution. A quantitative estimate of the agreement is given by the Brody parameter $\omega$, which takes the value $\omega=0$ for regular systems and $\omega \simeq 1$ for chaotic systems. We obtain $\omega=0.85 \pm 0.02$ which is, to our knowledge, the closest value to chaos ever observed in experimental bound states of nuclei. By contrast, the results for unnatural parity states are far from RMT behavior. We interpret these results as a consequence of the strength of the residual interaction in $^{208}$Pb, which, according to experimental data, is much stronger for natural than for unnatural parity states. In addition our results show that chaotic and non-chaotic nuclear states coexist in the same energy region of the spectrum.<br />Comment: 9 pages, 1 figure

Subjects

Subjects :
Nuclear Theory
Quantum Physics

Details

Database :
arXiv
Journal :
Phys. Rev. C 95, 014317 (2017)
Publication Type :
Report
Accession number :
edsarx.1605.00210
Document Type :
Working Paper
Full Text :
https://doi.org/10.1103/PhysRevC.95.014317