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飞秒激光诱导Li_(2)分子的电子-离子动力学的理论研究
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作者 洪许海 刘浩然 +2 位作者 赵文杰 郭强 谷鑫 《辽宁师范大学学报(自然科学版)》 CAS 2022年第1期38-44,共7页
随着飞秒激光技术的发展,科学家们致力于理解飞秒激光与物质相互作用过程中的物理机制.选取轴对称的Li_(2)分子为研究对象,采用实时间、实空间的含时密度泛函理论研究飞秒激光诱导的Li_(2)分子的电子-离子动力学过程.在之前Li_(2)分子... 随着飞秒激光技术的发展,科学家们致力于理解飞秒激光与物质相互作用过程中的物理机制.选取轴对称的Li_(2)分子为研究对象,采用实时间、实空间的含时密度泛函理论研究飞秒激光诱导的Li_(2)分子的电子-离子动力学过程.在之前Li_(2)分子光吸收谱的理论研究基础之上,选取其偶极响应频率作为激光频率,通过调制频率、强度、极化方向等激光参数,形成不同诱导条件,包括共振情况和非共振情况,研究Li_(2)分子中的响应偶极矩、离化电子数、总能量和原子实位移随时间变化的物理机制.在激光作用结束后,研究上述物理量在弛豫过程中的演化规律.通过对体系的电子密度进行截图,观测电子密度在原子实背景下的振荡行为. 展开更多
关键词 飞秒激光 Li_(2)分子 电子-离子动力学 响应偶极矩 电子密度振荡
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The Effect of Magnetic Field on an Asymmetrical Gaussian Potential Quantum Well Qubit 被引量:5
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作者 蔡春雨 赵翠兰 肖景林 《Communications in Theoretical Physics》 SCIE CAS CSCD 2015年第2期159-162,共4页
Under the influence of an applied magnetic field(MF), the eigenenergies and the eigenfunctions of the ground and the first excited states(GFES) are obtained by using a variational method of the Pekar type(VMPT) in a s... Under the influence of an applied magnetic field(MF), the eigenenergies and the eigenfunctions of the ground and the first excited states(GFES) are obtained by using a variational method of the Pekar type(VMPT) in a strong electron-LO-phonon coupling asymmetrical Gaussian potential quantum well(AGPQW). This AGPQW system may be employed as a two-level qubit. The numerical results have indicated(i) that when the electron situates in the superposition state of the GFES, we obtain the time evolution and the coordinate change of the electron probability density in the AGPQW,(ii) that due to the presence of the asymmetrical potential in the growth direction of the AGPQW, the probability density shows double-peak configuration, whereas there is only one peak if the confinement is a two dimensional symmetric one in the xy plane of the AGPQW,(iii) that the oscillatory period is a decreasing function of the cyclotron frequency of the MF, the height of the AGPQW and the polaron radius,(iv) and that as the range of the confinement potential(RCP) decreases the oscillatory period will decrease firstly and then increase and it will take a minimum when R =-0.234 nm. 展开更多
关键词 asymmetrical Gaussian potential quantum well QUBIT magnetic field probability density
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Characteristics of strong-coupling bipolaron qubit in two-dimensional quantum dot in electric field
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作者 张颖 韩超 额尔敦朝鲁 《Optoelectronics Letters》 EI 2015年第5期386-389,共4页
Based on Lee-Low-Pines(LLP) unitary transformation, this article adopts the variational method of the Pekar type and gets the energy and wave functions of the ground state and the first excited state of strong-couplin... Based on Lee-Low-Pines(LLP) unitary transformation, this article adopts the variational method of the Pekar type and gets the energy and wave functions of the ground state and the first excited state of strong-coupling bipolaron in two-dimensional quantum dot in electric field, thus constructs a bipolaron qubit. The numerical results represent that the time oscillation period T0 of probability density of the two electrons in qubit decreases with the increasing electric field intensity F and dielectric constant ratio of the medium η; the probability density Q of the two electrons in qubit oscillates periodically with the increasing time t; the probability of electron appearing near the center of the quantum dot is larger, while that appearing away from the center of the quantum dot is much smaller. 展开更多
关键词 appearing unitary dielectric periodically excited phonon constructs coordinates variational coherent
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