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Optical Physics of Imaging and Interferometric Phased Arrays

机译:成像和干涉测量阵列的光学物理

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摘要

Microwave, submillimetre-wave, and far-infrared phased arrays are of considerable importance for astronomy. We consider the behaviour imaging phased arrays and interferometric phased arrays from a functional perspective. It is shown that the average powers, field correlations, power fluctuations, and correlations between power fluctuations at the output ports of an imaging or interferometric phased array can be found once the synthesised reception patterns are known. The reception patterns do not have to be orthogonal or even linearly independent. It is shown that the operation of phased arrays is intimately related to the mathematical theory of frames, and that the theory of frames can be used to determine the degree to which any class of intensity or field distribution can be reconstructed unambiguously from the complex amplitudes of the travelling waves at the output ports. The theory can be used to set up a likelihood function that can, through Fisher information, be used to determine the degree to which a phased array can be used to recover the parameters of a parameterised source. For example, it would be possible to explore the way in which a system, perhaps interferometric, might observe two widely separated regions of the sky simultaneously.
机译:微波炉,淹没波和远红外相控阵对天文学非常重要。我们考虑行为成像相控阵列和从功能角度来看的干涉计量阵列。结果表明,一旦已知合成的接收模式,就可以找到成像或干涉式相控阵列的输出端口的电力波动之间的平均功率,场相关性,功率波动和相关性。接收模式不必正交或甚至线性地独立。结果表明,相控阵列的操作与帧的数学理论密切相关,并且帧的理论可用于确定可以从复杂的幅度明确地重建任何类别的强度或场分布的程度在输出端口处的行驶波。该理论可用于建立可以通过fisher信息来确定分阶段阵列可用于恢复参数化源的参数的程度来设置似然函数。例如,可以探索系统,也许干涉测量的方式可能同时观察两个广泛分离的天空区域。

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