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20172021
most citedMulti-state discrimination below the quantum noise limit at the single-photon level

41 citations · 68 across the 5 of their papers we have counts for

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8 papers · 1 filter

quant-ph2021

Channel-noise tracking for sub-shot-noise-limited receivers with neural networks

M. T. DiMario, F. E. Becerra

Non-Gaussian receivers for optical communication with coherent states can achieve measurement sensitivities beyond the limits of conventional detection, given by the quantum-noise…

quant-ph202011 cited

Single-shot non-Gaussian Measurements for Optical Phase Estimation

M. T. DiMario, F. E. Becerra

Estimation of the properties of a physical system with minimal uncertainty is a central task in quantum metrology. Optical phase estimation is at the center of many metrological ta…

quant-ph202015 cited

Phase tracking for sub-shot-noise-limited receivers

M. T. DiMario, F. E. Becerra

Non-conventional receivers for phase-coherent states based on non-Gaussian measurements such as photon counting surpass the sensitivity limits of shot-noise-limited coherent receiv…

quant-ph20191 cited

Beating the Standard Quantum Limit for Binary Constellations in the Presence of Phase Noise

L. Kunz, M. T. DiMario, F. E. Becerra +1

Unconventional receivers enable reduction of error rates in optical communication systems below the standard quantum limit (SQL) by implementing discrimination strategies for const…

quant-ph2019

Optimized communication strategies with binary coherent states over phase noise channels

M. T. DiMario, L. Kunz, K Banaszek +1

The achievable rate of information transfer in optical communications is determined by the physical properties of the communication channel, such as the intrinsic channel noise. Bo…

quant-ph2018

Robust Measurement for the Discrimination of Binary Coherent States

M. T. DiMario, F. E. Becerra

The discrimination of two nonorthogonal states is a fundamental element for secure and efficient communication. Quantum measurements of nonorthogonal coherent states can enhance in…