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量子反馈控制下不同环境双原子系统的关联演化
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作者 曹晶晶 郭金良 《天津师范大学学报(自然科学版)》 CAS 北大核心 2021年第1期7-12,共6页
为了研究抑制双原子在不同环境系统中量子关联演化的退纠缠问题,在设定的初态条件下利用数学方法得到系统的时间演化密度矩阵,利用赝模理论和基于量子跃迁的量子反馈控制给出系统主方程的形式,并选取单一热库和耦合热库2个模型,采用Conc... 为了研究抑制双原子在不同环境系统中量子关联演化的退纠缠问题,在设定的初态条件下利用数学方法得到系统的时间演化密度矩阵,利用赝模理论和基于量子跃迁的量子反馈控制给出系统主方程的形式,并选取单一热库和耦合热库2个模型,采用Concurrence和量子失谐度量了系统纠缠与关联的演化规律.结果表明:在单一热库模型中,初始状态参数反馈控制的强度可以有效提高系统的稳态纠缠和关联.此外,为了进一步研究3个不同初态的关联演化,绘制出演化曲线,并给出相应的物理解释.结果表明受单一热库影响的双原子系统的量子纠缠和量子关联在最初一段时间内会发生衰减,随着时间的延长,系统的态复生最终达到稳态.与单一热库相比,耦合热库模型中,反馈控制强度对抑制系统退纠缠现象的作用不明显. 展开更多
关键词 量子反馈控制 量子纠缠 开放量子系统 双原子系统 单一热库 耦合热库 关联演化
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2D FEM analysis for coupled thermo-hydro-mechanical-migratory processes in near field of hypothetical nuclear waste repository 被引量:3
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作者 张玉军 张维庆 《Journal of Central South University》 SCIE EI CAS 2010年第3期612-620,共9页
In order to consider the influence of temperature and underground water movement, an elastoplastic model and a 2D FEM stress fields on the migration of radioactive nuclide with code for analysis of coupled thermo-hyd... In order to consider the influence of temperature and underground water movement, an elastoplastic model and a 2D FEM stress fields on the migration of radioactive nuclide with code for analysis of coupled thermo-hydro-mechanical (THM) processes in saturated and unsaturated porous media were extended and improved through introducing the percolation and migration equation, so that the code can be used for solving the temperature field, flow field, stress field and nuclide concentration field simultaneously. The states of temperatures, pore pressures and nuclide concentrations in the near field of a hypothetical nuclear waste repository were investigated. The influence of the half life of the radioactive nuclide on the temporal change of nuclide concentration was analyzed considering the thermo-hydro-mechanical-migratory coupling. The results show that, at the boundary of the vitrified waste, the concentration of radioactive nuclide with a half life of 10 a falls after a period of rising, with the maximum value of 0.182 mol/m3 and the minimum value of 0.181 mol/m^3 at the end of computation. For a half life of 1 000 a, the concentration of radioactive nuclide always increases with the increase of the time during the computation period; and the maximum value is 1.686 mol/m^3 at the end of the computation. Therefore, under the condition of THM coupling, the concentration of radioactive nuclide with a shorter half life will decrease more quickly with water flow; but for the radioactive nuclide with a longer half life, its concentration will keep at a higher level for a longer time in the migration process. 展开更多
关键词 radioactive nuclide CONCENTRATION thermo-hydro-mechanical-migratory coupling 2D FEM analysis
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