论文标题
与自旋相关的波袋进化的时间能量不确定性极限
Time-Energy Uncertainty Limit for spin-related wavepacket evolution
论文作者
论文摘要
在本报告中,我们研究了通过海森伯格的不平等现象与旋转轨道耦合的低维系统的电荷载体的量子传输。为了开发我们的分析,精确的\ emph {gendanken}实验是仔细的,主要基于自旋场效应晶体管现象学,并考虑了量子机械有限的确定性的几种广泛接受的方法。在通过半导体量子线的电子波袋演化过程中验证时间能量不确定性关系(TEUR)的适用性时,一些定性信息与系统的动态行为相关。在固定相法的框架中,还解决了问题,以确保波袋的演变具有稳健的连贯性,这最近暗示着对所设想的情况的某些限制。定制不同的输入参数,例如:传入的颗粒自旋极化,屏障厚度和Rashba的自旋轨道相互作用(R-SOI)强度,我们观察到了吸引人的效果,而数据包通过准1D异质结构演变而来。希望其中一些可以在Spintronics设备设计方面有帮助。我们在所谓的保护区内获得了大多数数值模拟结果。但是,对于某些屏障厚度,关于TEUR施加的明显理论极限,某些值下降到了禁区。作为在我们对TEUR的理论验证中的预期奖励,由于有限的R-SOI值引起的旋转分裂已被很好地注意到。
In this report we study the quantum transport of charge carriers for low dimensional systems with spin-orbit coupling by means of Heisenberg's inequalities. To develop our analysis, an accurate \emph{gendanken} experiment was carefully put together, mainly based on the spin-field effect transistor phenomenology and taking into account several wide accepted approaches on quantum mechanical limited determinism. While verifying the applicability of time-energy uncertainty relation (TEUR) during electronic wavepacket's evolution through a semiconductor quantum wire, some qualitative information related the dynamic behavior of the system is found. The problem is also approached in the framework of the stationary phase method to guarantee robust coherence for wavepacket's evolution, which lately implies certain restrictions on the incident energy values for the envisioned cases. Tailoring different input parameters such as: incoming particles spin polarization, barrier thickness and Rashba's spin-orbit interaction (R-SOI) strength, we have observed appealing effects while the packet evolves through a quasi-1D heterostructure. Hopefully some of them could be of help in spintronics device designing. We have obtained most of the numerical simulation results, within the so-called conservation zone. However, for certain barrier thicknesses, some values drop into the forbidden area regarding the clear theoretical limit imposed by the TEUR. As an expected bonus throughout our theoretical validation of the TEUR, spin splitting due to finite values of R-SOI was nicely noticed.