In this paper, we propose a novel quantum-secured single-pixel imaging method that utilizes non-classical correlations of a photon pair. Our method can detect any attempts to deceive it by exploiting a non-classical correlation of photon pairs while rejecting strong chaotic light illumination through photon heralding. A security analysis based on polarization-correlation has been conducted, demonstrating that our method has improved security compared to existing quantum-secured imaging. More specifically, a partial deceiving attack, which sends a mixture of a true and a false signal, can be detected with our proposed analysis, while currently employed methods cannot. We also provide proof-of-principle demonstrations of our method and trustw...
Practical implementations of quantum key distribution (QKD) have been shown to be subject to various...
Imaging based on the induced coherence effect makes use of photon pairs to obtain information of an ...
We describe a protocol in which we detect intercept-resend jamming of imaging and can reverse its ef...
We have built an imaging system that uses a photon\u27s position or time-of-flight information to im...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2013. Chapters 1 and 2 written in co...
Imaging with quantum states of light promises advantages over classical approaches in terms of resol...
Pixelation occurs in many imaging systems and limits the spatial resolution of the acquired images. ...
Quantum correlation of two-photon states has been utilized to suppress the environmental noise in im...
Imaging, detection and ranging of objects in the presence of significant background noise is a funda...
We describe a protocol by which an imaging system could be protected against jamming by a malevolent...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
We show a simple yet effective method that can be used to characterize the per pixel quantum efficie...
Quantum cryptography harnesses quantum light, in particular single photons, to provide security guar...
The use of multimedia data sharing has drastically increased in the past few decades due to the revo...
Practical implementations of quantum key distribution (QKD) have been shown to be subject to various...
Imaging based on the induced coherence effect makes use of photon pairs to obtain information of an ...
We describe a protocol in which we detect intercept-resend jamming of imaging and can reverse its ef...
We have built an imaging system that uses a photon\u27s position or time-of-flight information to im...
Thesis (Ph. D.)--University of Rochester. Institute of Optics, 2013. Chapters 1 and 2 written in co...
Imaging with quantum states of light promises advantages over classical approaches in terms of resol...
Pixelation occurs in many imaging systems and limits the spatial resolution of the acquired images. ...
Quantum correlation of two-photon states has been utilized to suppress the environmental noise in im...
Imaging, detection and ranging of objects in the presence of significant background noise is a funda...
We describe a protocol by which an imaging system could be protected against jamming by a malevolent...
Entangled photons can be exploited for single-photon imaging: photons are accumulated one by one to ...
Classical light sources emit a randomly-timed stream of individual photons, the spatial distribution...
We show a simple yet effective method that can be used to characterize the per pixel quantum efficie...
Quantum cryptography harnesses quantum light, in particular single photons, to provide security guar...
The use of multimedia data sharing has drastically increased in the past few decades due to the revo...
Practical implementations of quantum key distribution (QKD) have been shown to be subject to various...
Imaging based on the induced coherence effect makes use of photon pairs to obtain information of an ...
We describe a protocol in which we detect intercept-resend jamming of imaging and can reverse its ef...