A Way to Realize Controlled Nuclear Fusion by γ-Laser or γ-Ray
- 1 Institute of Theoretical Physics, Northeast Normal University, Changchun, China
- 2 Key Laboratory of Microwave and Electromagnetic Radiation, Institute of Electronics, Chinese Academy of Science, Beijing, China
Abstract
A way is proposed to realize controllable-nuclear fusion by γ -laser or γ -ray and ordinary laser with their certain frequencies and large enough intensities to irradiate a target ball. The function of ordinary laser is to heat the target nuclei and to realize the inertial confinement for the target nuclei. The target nuclei absorbing γ -photons will be in a certain excited state. The scattering cross-sections will be larger and the ignition temperature will be lower to realize fusion of the nuclei in their excited states than those of the nuclei in their ground states. In contrast with the nuclei applied in conventional fusion, e.g., deutons and tritons, according to the way, the nuclei applied to fusion should have the following characters: the nuclei have their excited states, one of the excited states has higher energy and longer lifetime, and the masses of the nuclei are lesser. Thus, the Lawson conditions can more easily be realized so that the controllable nuclear fusion is possibly realized by the way.
- Chen, S.-H. and Chen, Z.W. (2014) Electron-Photon Backscattering Lasers. Laser Physics, 24, 6.
- Chen, S.-H. and Chen, Z.W. (2015) A Discussion on Electron-Photon Backscattering Lasers and the Electron-Photon Backscattering Laser in a Laser Standing Wave cavity. Laser Physics, 25, 5.
- Chen, S.-H. and Chen, Z.W. (2016) Coherent Conditions of Electron-Photon Backscattering Light in a Wiggle Magnetic Field. Laser Physics, 26, 5.
- Hurricane, O.A., Callahan, D.A., Casey, D.T., et al. (2014) Nature, Fuel Gain Exceeding Unity in an Inertially Confined Fusion Implosion. 506, 343-348.
- Firestone, R.B., Shirley, V.S., Frank Chu, S.Y., et al. (1996) Table of Isotopes, Eighth Edition, Weily Interscience, Hoboken, 285-313.
- Yang, F.J., Wang, Y.S. and Lu, F.Q. (2006) Nuclear Physics. 2nd Edition, Fudan University Press, Shanghai, 295-296. (In Chinese)