Article ID Journal Published Year Pages File Type
739090 Optics & Laser Technology 2015 7 Pages PDF
Abstract

•We propose a computational self-synchronization scheme for illuminants and detectors.•We report a high speed computational ghost imaging system using the scheme.•The system is around 14 times faster than state-of-the-arts.•Our technique takes an important step towards ghost imaging of dynamic scenes.

High quality computational ghost imaging needs to acquire a large number of correlated measurements between the to-be-imaged scene and different reference patterns, thus ultra-high speed data acquisition is of crucial importance in real applications. To raise the acquisition efficiency, this paper reports a high speed computational ghost imaging system using a 20 kHz spatial light modulator together with a 2 MHz photodiode. Technically, the synchronization between such high frequency illumination and bucket detector needs nanosecond trigger precision, so the development of synchronization module is quite challenging. To handle this problem, we propose a simple and effective computational self-synchronization scheme by building a general mathematical model and introducing a high precision synchronization technique. The resulted efficiency is around 14 times faster than state-of-the-arts, and takes an important step towards ghost imaging of dynamic scenes. Besides, the proposed scheme is a general approach with high flexibility for readily incorporating other illuminators and detectors.

Related Topics
Physical Sciences and Engineering Engineering Electrical and Electronic Engineering
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