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Wavepacket Simulations Using The Quantum Trajectory Method With Loop Scheduling

机译:使用循环调度的量子轨迹方法的WavePacket模拟

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Time-dependent wavepackets are widely used to model various phenomena in physics. One approach in simulating the wavepacket dynamics is the quantum trajectory method (QTM). Based on the hydrodynamic formulation of quantum mechanics, the QTM solves the equations governing the wavepacket propagation using a computationally-intensive moving least squares algorithm. This paper describes an implementation of the QTM on a message-passing environment. Loop scheduling is integrated into the QTM for parallelization and load balancing. Analysis of the parallel overhead indicates the scalability of this integrated strategy. Results of timing experiments on a cluster of symmetric multiprocessors are presented to confirm that the code achieves significant reductions in overall simulation time.
机译:时间依赖的波波皮克被广泛用于在物理学中建模各种现象。模拟WavePacket动态的一种方法是量子轨迹方法(QTM)。基于量子力学的流体动力学配方,QTM使用计算密集型移动最小二乘算法解决了控制波袋传播的方程。本文介绍了QTM对消息传递环境的实现。循环调度集成到QTM中以进行并行化和负载平衡。平行开销的分析表明了这种集成策略的可扩展性。提出了一组对称多处理器的定时实验结果,以确认代码达到整体模拟时间的显着减少。

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