Science Advances

Supplementary Materials

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  • Supplementary Text
  • Fig. S1. The quantum illumination advantage as a function of η and T plotted with d = 0.0016; pr = 0.0016; ε = 0.5.
  • Fig. S2. The quantum illumination advantage as a function of η and ε (plotted with d = 0.0016; pr = 0.0016; T = 0.0016.
  • Fig. S3. Imaging using quantum illumination within an increasing thermal background.
  • Fig. S4. Quantum illumination advantage A calculated over a range of increasing levels of thermal illumination.
  • Fig. S5. Plot of the quantum illumination advantage A for the system under differing levels of optical loss.
  • Fig. S6. The bit error rate Perr of detecting a target calculated over a range of thermal light levels.
  • Fig. S7. The bit error rate Perr of detecting a target calculated over a range of thermal light levels using the second method.
  • Table S1. Table of the average s weight values calculated over a range of thermal light levels using the second method for each of the different levels of thermal illumination.

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