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Quantum mechanical MRI simulations: Solving the matrix dimension problem

机译:量子力学MRI模拟:解决矩阵尺寸问题

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We propose a solution to the matrix dimension problem in quantum mechanical simulations of MRI (magnetic resonance imaging) experiments on complex molecules. This problem is very old; it arises when Kronecker products of spin operators and spatial dynamics generators are taken—the resulting matrices are far too large for any current or future computer. However, spin and spatial operators individually have manageable dimensions, and we note here that the action by their Kronecker products on any vector may be computed without opening those products. This eliminates large matrices from the simulation process. MRI simulations for coupled spin systems of complex metabolites in three dimensions with diffusion, flow, chemical kinetics, and quantum mechanical treatment of spin relaxation are now possible. The methods described in this paper are implemented in versions 2.4 and later of the Spinach library.
机译:我们提出了在复杂分子的MRI(磁共振成像)实验的量子力学模拟中解决矩阵尺寸问题的方法。这个问题很老了。当采用自旋算子和空间动力学生成器的Kronecker乘积时,就会出现这种情况—对于任何当前或将来的计算机,所得矩阵都太大了。但是,自旋和空间算子分别具有可管理的维,并且在此我们注意到,可以在不打开那些乘积的情况下计算其Kronecker乘积对任何矢量的作用。这消除了仿真过程中的大型矩阵。现在可以对复杂代谢物的自旋耦合系统进行三维MRI模拟,包括扩散,流动,化学动力学和自旋弛豫的量子力学处理。本文描述的方法在Spinach库的2.4版和更高版本中实现。

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