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Information processing in parallel through directionally resolved molecular polarization components in coherent multidimensional spectroscopy

机译:相干多维光谱中通过定向解析的分子极化成分并行进行信息处理

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We propose that information processing can be implemented by measuring the directional components of the macroscopic polarization of an ensemble of molecules subject to a sequence of laser pulses. We describe the logic operation theoretically and demonstrate it by simulations. The measurement of integrated stimulated emission in different phase matching spatial directions provides a logic decomposition of a function that is the discrete analog of an integral transform. The logic operation is reversible and all the possible outputs are computed in parallel for all sets of possible multivalued inputs. The number of logic variables of the function is the number of laser pulses used in sequence. The logic function that is computed depends on the chosen chromophoric molecular complex and on its interactions with the solvent and on the two time intervals between the three pulses and the pulse strengths and polarizations. The outputs are the homodyne detected values of the polarization components that are measured in the allowed phase matching macroscopic directions, k(l), k(l) = Sigma(i) l(i) k(i) where k(i) is the propagation direction of the ith pulse and {l(i)} is a set of integers that encodes the multivalued inputs. Parallelism is inherently implemented because all the partial polarizations that define the outputs are processed simultaneously. The outputs, which are read directly on the macroscopic level, can be multivalued because the high dynamical range of partial polarization measurements by nonlinear coherent spectroscopy allows for fine binning of the signals. The outputs are uniquely related to the inputs so that the logic is reversible. (C) 2015 AIP Publishing LLC.
机译:我们建议可以通过测量受一系列激光脉冲影响的分子整体的宏观极化的方向分量来实现信息处理。我们从理论上描述逻辑运算,并通过仿真进行演示。在不同的相位匹配空间方向上的积分受激发射的测量提供了作为积分变换的离散模拟的函数的逻辑分解。逻辑运算是可逆的,并且为所有可能的多值输入集并行计算所有可能的输出。该函数的逻辑变量数是顺序使用的激光脉冲数。计算出的逻辑函数取决于所选择的发色分子配合物及其与溶剂的相互作用以及三个脉冲之间的两个时间间隔以及脉冲强度和极化。输出是在允许的相位匹配宏观方向上测量的偏振分量的零差检测值,k(l),k(l)= Sigma(i)l(i)k(i),其中k(i)是第i个脉冲和{l(i)}的传播方向是一组对多值输入进行编码的整数。并行性是固有实现的,因为定义输出的所有部分极化都是同时处理的。直接在宏观水平上读取的输出可以是多值的,因为通过非线性相干光谱法进行的部分偏振测量的高动态范围可以对信号进行精细分档。输出与输入唯一相关,因此逻辑是可逆的。 (C)2015 AIP Publishing LLC。

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