Last I, Jortner J
School of Chemistry, Tel Aviv University, Ramat Aviv, 69978 Tel Aviv, Israel.
Phys Rev Lett. 2001 Jul 16;87(3):033401. doi: 10.1103/PhysRevLett.87.033401. Epub 2001 Jun 25.
We propose a new mechanism for the production of high-energy ( E>3 keV) deuterons, suitable to induce dd nuclear fusion, based on multielectron ionization and Coulomb explosion of heteronuclear deuterium containing molecular clusters, e.g., (D2O)n, in intense ( 10(16)-2x10(18) W/cm2) laser fields. Cluster size equations for E, in conjunction with molecular dynamics simulations, reveal important advantages of Coulomb explosion of (D2O)n heteronuclear clusters, as compared with (D)n clusters. These involve the considerably increased D+ kinetic energy and a narrow, high-energy distribution of deuterons.
我们提出了一种产生高能(E>3 keV)氘核的新机制,该机制适用于诱导氘-氘核聚变,其基于含氘异核分子团簇(如(D2O)n)在强(10(16)-2x10(18) W/cm2)激光场中的多电子电离和库仑爆炸。结合分子动力学模拟的E的团簇尺寸方程揭示了(D2O)n异核团簇库仑爆炸相对于(D)n团簇的重要优势。这些优势包括氘离子动能显著增加以及氘核的窄高能分布。