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Optimal transformations for optical multiplex measurements in the presence of photon noise

机译:存在光子噪声时用于光学多路复用测量的最佳转换

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Hadamard multiplexing is a measurement strategy that yields best sensitivity improvements over scanning measurements for signal-independent detector noise. The presence of photon noise degrades the performance of Hadamard multiplexing because of the increase of photon noise by the superposition of multiple signals. I derive the reduction of the sensitivity gain of a Hadamard measurement and an upper limit for the gain of any cyclic multiplexing strategy in the presence of photon noise. This upper limit clearly exceeds the reduced Hadamard gain and can be achieved by multiplexing sequences that differ from Hadamard S sequences but also share some similarities with respect to their autocorrelation. Examples of such sequences are given. As the analysis shows, the presence of photon noise limits the gain of multiplexing strategies to a finite value, which depends on the ratio between photon noise and detector noise and cannot be exceeded by increasing the number of multiplexed channels. In addition, only switching multiplex schemes, which superpose either all the light or no light of individual channels, can achieve the upper limit of the gain. © 2005 Optical Society of America.
机译:Hadamard多路复用是一种测量策略,与不依赖信号的检测器噪声的扫描测量相比,它可以提供最佳的灵敏度提高。由于多个信号的叠加导致光子噪声增加,因此光子噪声的存在降低了Hadamard多路复用的性能。我推导了Hadamard测量的灵敏度增益的降低,以及在存在光子噪声的情况下任何循环多路复用策略的增益的上限。该上限明显超过降低的Hadamard增益,可以通过复用不同于Hadamard S序列但在自相关方面也有一些相似之处的序列来实现。给出了这种序列的例子。分析表明,光子噪声的存在将多路复用策略的增益限制为有限值,这取决于光子噪声与检测器噪声之间的比率,并且不能通过增加多路复用通道的数量来超过。此外,只有将单个通道的所有光叠加或不叠加单个通道的切换多路复用方案,才能达到增益的上限。 &复制; 2005年美国眼镜学会。

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