supported by the Science Challenge Project(No.TZ2018005);the National Natural Science Foundation of China(Nos.11875191,11991073,11890710,and 11721404);the Strategic Priority Research Program of the CAS(Nos.XDB1602 and XDA01020304);the Key Program of CAS(Nos.XDA01020304 and XDB17030500);the National Key R&D Program of China(No.2017YFA0403301)。
A pulsed fast neutron source is critical for applications of fast neutron resonance radiography and fast neutron absorption spectroscopy.However,due to the large transversal source size(of the order of mm)and long pul...
Supported by the National Natural Science Foundation of China (11675075);Independent research project of key laboratory of plasma physics,CAEP(JCKYS2021212009);Hengyang Municipal Science and Technology Project (202150054076)。
A reasonable prediction of photofission observables plays a paramount role in understanding the photofission process and guiding various photofission-induced applications,such as short-lived isotope production,nuclear...
Photofission fragments mass yield for^(232)Th,^(234;238) U,^(237) Np, and^(239;240;242) Pu isotopes are investigated.The calculations are done using a developed approach based on Gorodisskiy's phenomenological formali...
Project New Orion entails a pulsed nuclear space propulsion system that utilizes photofission through the implementation of an ultra-intense laser. The historical origins derive from the endeavors of Project Orion, wh...
Photofission enables a unique capability for the domain of non-chemical space propulsion. An ultra-intense laser enables the capacity to induce nuclear fission through the development of bre- msstrahlung photons. A fu...