Enhancement of the Deuteron-Fusion Reactions in Metals and its Experimental Implications
arXiv:0805.4538 · doi:10.1103/PhysRevC.78.015803
Abstract
Recent measurements of the reaction d(d,p)t in metallic environments at very low energies performed by different experimental groups point to an enhanced electron screening effect. However, the resulting screening energies differ strongly for divers host metals and different experiments. Here, we present new experimental results and investigations of interfering processes in the irradiated targets. These measurements inside metals set special challenges and pitfalls which make them and the data analysis particularly error-prone. There are multi-parameter collateral effects which are crucial for the correct interpretation of the observed experimental yields. They mainly originate from target surface contaminations due to residual gases in the vacuum as well as from inhomogeneities and instabilities in the deuteron density distribution in the targets. In order to address these problems an improved differential analysis method beyond the standard procedures has been implemented. Profound scrutiny of the other experiments demonstrates that the observed unusual changes in the reaction yields are mainly due to deuteron density dynamics simulating the alleged screening energy values. The experimental results are compared with different theoretical models of the electron screening in metals. The Debye-Hückel model that has been previously proposed to explain the influence of the electron screening on both nuclear reactions and radioactive decays could be clearly excluded.
22 pages, 12 figures, REVTeX4, 2-column format. Submitted to Phys. Rev. C; accepted
References in corpus (5)
- Alpha decay rate enhancement in metals: An unlikely scenario
- Measurement of the Enhanced Screening Effect of the d+d Reactions in Metals
- Absence of low-temperature dependence of the decay of 7Be and 198Au in metallic hosts
- On the absence of appreciable half-life changes in alpha emitters cooled in metals to 1 Kelvin and below
- Quantum mechanical ab-initio simulation of the electron screening effect in metal deuteride crystals
Cited by in corpus (12)
- LUNA: Nuclear Astrophysics Deep Underground
- The Future of Solar Neutrinos
- Electron screening and its effects on Big-Bang nucleosynthesis
- Solar fusion III: New data and theory for hydrogen-burning stars
- Forbidden Nuclear Reactions
- Measurement of the H()He S-factor at 265-1094keV
- Laboratory electron screening in nuclear resonant reactions
- First observation of electron emission from the DD threshold resonance
- Investigation of 74As decay branching ratio dependence on the host material
- Nuclear Fusion Enhancement by Heavy Nuclear Catalysts
- Jetter and Post nuclear fusion cycles: new fire to an old idea
- Experimental Plan to Verify the YPCP Model: "Yukawa Pico Chemistry and Physics" Implications in the CF-Lenr Field