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Amplitude-Phase Modulated CVQKD Protocol
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abstract
Here we report the performance of a discrete modulated Continuous Variable Quantum Key Distribution protocol based on eight and sixteen state optimal Amplitude Phase Keying constellations with pure loss quantum channel transmission. Our constellations use the same amplitudes and state probability as in an optimal four-state unidimensional constellation model and apply amplitude/phase modulation to the quadratures of coherent states. We compare the obtained results with the performance of conventional $m$-PSK and $m$-APK constellations. The results presented show that protocols that use the proposed constellations outperform the ones based on conventional constellations in both secret key rate and link distance. In special, our protocol is able to accomplish viable SKR's in low transmittance regime, $\tau<0.2$.
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Ring Optimized M-APSK Modulation for Discrete Modulated CV-QKD
Jointly optimizing ring radius ratios, ring probabilities, and modulation variance extends the modeled maximum transmission distance of 16-APSK discrete-modulated CV-QKD by about 15% over conventional binomial APSK.
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