Authors
Mark Bradshaw, Syed M Assad, Jing Yan Haw, Si-Hui Tan, Ping Koy Lam, Mile Gu
Publication date
2017/2
Journal
Physical Review A
Volume
95
Issue
2
Pages
022333
Publisher
American Physical Society
Description
We cast the problem of illuminating an object in a noisy environment into a communication protocol. A probe is sent into the environment, and the presence or absence of the object constitutes a signal encoded on the probe. The probe is then measured to decode the signal. We calculate the Holevo information and bounds to the accessible information between the encoded and received signal with two different Gaussian probes—an Einstein-Podolsky-Rosen (EPR) state and a coherent state. We also evaluate the Gaussian discord consumed during the encoding process with the EPR probe. We find that the Holevo quantum advantage, defined as the difference between the Holevo information obtained from the EPR and coherent state probes, is approximately equal to the discord consumed. These quantities become exact in the typical illumination regime of low object reflectivity and low probe energy. Hence we …
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