An important problem in quantum information theory is finding the best possible capacity of the optical communication channel employing suitable codewords, receiver design, and constellation optimization techniques. In this paper, we derive an alternative channel capacity, CG, of phase-shift keying coherent state with a realizable displacement receiver by maximizing mutual information over symbol priors and pre-detection displacement. We find that CG is higher than the capacity achieved by maximizing mutual information over symbol prior but with zero displacement. The overall scheme demonstrates designing an improved, yet easy-to-implement receiver for better communication performance by tuning it at different photon number regime. Further,...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
We analyze a novel quantum receiver for M-ary phase-shift keyed signals that outperforms the standar...
We assume information is discrete-modulated over coherent states of the single-mode electromagnetic ...
An important problem in quantum information theory is finding the best possible performance of the o...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
Discriminating two coherent states is a fundamental problem in both classical and quantum communicat...
Discriminating two coherent states is a fundamental problem in both classical and quantum communicat...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
The fundamental performance limits and channel capacity of optical commu-nications systems operating...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
We analyze a novel quantum receiver for M-ary phase-shift keyed signals that outperforms the standar...
We assume information is discrete-modulated over coherent states of the single-mode electromagnetic ...
An important problem in quantum information theory is finding the best possible performance of the o...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
Discriminating two coherent states is a fundamental problem in both classical and quantum communicat...
Discriminating two coherent states is a fundamental problem in both classical and quantum communicat...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
We consider the design of amplitude phase-shift keying (APSK) constellations, targeting their applic...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
The fundamental performance limits and channel capacity of optical commu-nications systems operating...
The impossibility of perfectly discriminating non-orthogonal quantum states imposes far-reaching con...
We analyze a novel quantum receiver for M-ary phase-shift keyed signals that outperforms the standar...
We assume information is discrete-modulated over coherent states of the single-mode electromagnetic ...