المساق
arXiv 2011-01-13 DOI 10.1364/OE.19.007480 0 مشاهدة

Optical Phase-Space-Time-Frequency Tomography

Rojas, Paul · Blaser, Rachel · Sua, Yong Meng · Lee, Kim Fook

الأصل · EN

We present a new approach for constructing optical phase-space-time-frequency tomography (OPSTFT) of an optical wave field. This tomography can be measured by using a novel four-window optical imaging system based on two local oscillator fields balanced heterodyne detection. The OPSTFT is a Wigner distribution function of two independent Fourier Transform pairs, i.e., phase-space and time-frequency. From its theoretical and experimental aspects, it can provide information of position, momentum, time and frequency of a spatial light field with precision beyond the uncertainty principle. We simulate the OPSTFT for a light field obscured by a wire and a single-line absorption filter. We believe that the four-window system can provide spatial and temporal properties of a wave field for quantum image processing and biophotonics.

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