Direct observation of the superallowed α-decay of <sup>104</sup>Te
Nature News ·

Gamow, G. Quantum theory of the atomic nucleus. Z. Phys. 51 , 204–212 (1928). Article ADS CAS Google Scholar Gurney, R. W. & Condon, E. U. Quantum mechanics and radioactive disintegration. Phys. Rev. …
Gamow, G. Quantum theory of the atomic nucleus. Z. Phys. 51 , 204–212 (1928). Article ADS CAS Google Scholar Gurney, R. W. & Condon, E. U. Quantum mechanics and radioactive disintegration. Phys. Rev. 33 , 127–140 (1929). Article ADS CAS Google Scholar Rasmussen, J. O. Alpha-decay barrier penetrabilities with an exponential nuclear potential: even-even nuclei. Phys. Rev. 113 , 1593–1598 (1959). Article ADS CAS Google Scholar Rutherford, E. Uranium radiation and the electrical conduction produced by it. Philos. Mag. 47 , 109–163 (1899). Article CAS Google Scholar Kondev, F., Wang, M., Huang, W., Naimi, S. & Audi, G. The NUBASE2020 evaluation of nuclear physics properties. Chin. Phys. C 45 , 030001 (2021). Article ADS CAS Google Scholar Hoyle, F. On nuclear reactions occuring in very hot stars. I. The synthesis of elements from carbon to nickel. Astrophys. J. Suppl. 1 , 121 (1954). Article ADS CAS Google Scholar Tanaka, J. et al. Formation of α clusters in dilute neutron-rich matter. Science 371 , 260–264 (2021). Article ADS CAS PubMed Google Scholar Geiger, H. & Nuttall, J. M. LVII. The ranges of the α particles from various radioactive substances and a relation between range and period of transformation. Philos. Mag. 22 , 613–621 (1911). Article CAS Google Scholar Mang, H. J. Calculation of α -transition probabilities. Phys. Rev. 119 , 1069–1075 (1960). Article ADS CAS Google Scholar Macfarlane, R. D. & Siivola, A. New region of alpha radioactivity. Phys. Rev. Lett. …
Original source: Nature News