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首页> 外文期刊>The Journal of Chemical Physics >Geometric phases and quantum dynamics in spin-orbit coupled systems
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Geometric phases and quantum dynamics in spin-orbit coupled systems

机译:自旋轨道耦合系统中的几何相位和量子动力学

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The quantum dynamics of vibronically interacting systems with additional effects of spin-orbit coupling is studied theoretically. The combined effects of spin-orbit and vibronic coupling lead to geometric phases which can vary smoothly between the case of uncoupled potential energy surfaces (vanishing geometric phase) and the limiting case pertinent for conically intersecting surfaces (geometric phase equals pi). The impact of these phases on the nuclear energy levels and wave functions is revealed by companion studies for two and three coupled potential energy surfaces including and suppressing the geometric phase effects. For free pseudorotation the resulting effective angular momentum can take any noninteger value. The stationary wave functions exhibit a corresponding smooth transition between the limiting cases of integer and half-odd integer angular momentum. For localized wave packets with high angular momentum the geometric phase increases in the same way as found when treating the nuclear coordinates as classical variables. For delocalized wave packets destructive interference leads to a complete loss of symmetry and, for longer times, to a different overall shape of the wave packet. The effects can be relevant also when the nonadiabatic coupling to the higher potential energy surface is negligible. (C) 1998 American Institute of Physics. [S0021-9606(98)01404-4]. [References: 47]
机译:理论上研究了具有自旋轨道耦合效应的电子相互作用系统的量子动力学。自旋轨道和振动耦合的综合作用导致几何相位可以在未耦合的势能面(消失的几何相位)和与圆锥形相交表面有关的极限情况(几何相位等于pi)之间平滑变化。通过对两个和三个耦合的势能面进行的伴随研究,揭示了这些相对核能级和波函数的影响,包括和抑制了几何相效应。对于自由的伪旋转,所得的有效角动量可以采用任何非整数值。平稳波函数在整数和半奇数整数角动量的极限情况之间表现出相应的平滑过渡。对于具有高角动量的局部波包,几何相位以与将核坐标视为经典变量时发现的相同方式增加。对于离域的波包,破坏性干扰会导致对称性的完全丧失,并在更长的时间内导致波包的整体形状有所不同。当与高势能表面的非绝热耦合可忽略不计时,这些影响也可能是相关的。 (C)1998美国物理研究所。 [S0021-9606(98)01404-4]。 [参考:47]

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