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Singularity of the time-energy uncertainty in adiabatic perturbation and cycloids on a Bloch sphere

机译:Bloch球面上绝热摄动和摆线的时间能量不确定性的奇异性

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摘要

Adiabatic perturbation is shown to be singular from the exact solution of a spin-1/2 particle in a uniformly rotating magnetic field. Due to a non-adiabatic effect, its quantum trajectory on a Bloch sphere is a cycloid traced by a circle rolling along an adiabatic path. As the magnetic field rotates more and more slowly, the time-energy uncertainty, proportional to the length of the quantum trajectory, calculated by the exact solution is entirely different from the one obtained by the adiabatic path traced by the instantaneous eigenstate. However, the non-adiabatic Aharonov- Anandan geometric phase, measured by the area enclosed by the exact path, approaches smoothly the adiabatic Berry phase, proportional to the area enclosed by the adiabatic path. The singular limit of the time-energy uncertainty and the regular limit of the geometric phase are associated with the arc length and arc area of the cycloid on a Bloch sphere, respectively. Prolate and curtate cycloids are also traced by different initial states outside and inside of the rolling circle, respectively. The axis trajectory of the rolling circle, parallel to the adiabatic path, is shown to be an example of transitionless driving. The non-adiabatic resonance is visualized by the number of cycloid arcs.
机译:在均匀旋转的磁场中,自旋1/2粒子的精确解显示出绝热扰动是奇异的。由于非绝热效应,其在布洛赫球上的量子轨迹是一个摆线,该摆线由沿着绝热路径滚动的圆跟踪。随着磁场旋转的越来越慢,精确解计算出的与量子轨迹长度成比例的时间能量不确定性与瞬时本征态绝热路径获得的不确定性完全不同。然而,非绝热的Aharonov-Anandan几何相位(由精确路径包围的面积测量)平滑地接近绝热的贝里相位,与绝热路径包围的面积成比例。时间能量不确定性的奇异极限和几何相位的正则极限分别与Bloch球面上摆线的弧长和弧面积相关。长和摆线摆线也分别通过滚动圈外和圈内的不同初始状态来追踪。平行于绝热路径的滚动圆的轴轨迹显示为无过渡驱动的一个示例。非绝热共振通过摆线电弧的数量可视化。

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