collaborators

5 papers

quant-ph2026

Benchmarking Optical Receivers for Quantum Communication and Randomness Certification

Hamid Tebyanian

The choice of optical receiver determines which properties of the transmitted states remain visible in the observed data and therefore affects the performance of different quantum…

quant-ph2026

On-chip semi-device-independent quantum random number generator exploiting contextuality

Maddalena Genzini, Caterina Vigliar, Mujtaba Zahidy +6

We present a semi-device-independent quantum random number generator (QRNG) based on the violation of a contextuality inequality, implemented by the integration of two silicon phot…

quant-ph2026

Squeezed-state semi-device-independent quantum randomness generation

Hamid Tebyanian

This paper investigates semi-device-independent quantum randomness generation with a trusted binary pure-state source and an untrusted binary detector whose side information is cla…

quant-ph2026

Higher rates for semi-device-independent randomness expansion by recycling input randomness

Rutvij Bhavsar, Hamid Tebyanian, Roger Colbeck

Although quantum random number generators rely on the inherent indeterminism of quantum mechanics, ensuring that the numbers produced are secure remains a significant challenge. We…

quant-ph2025

33 Gbit/s source-device-independent quantum random number generator based on heterodyne detection with real-time FPGA-integrated extraction

Marius Cizauskas, Hamid Tebyanian, Mark Fox +3

We present a high-speed continuous-variable quantum random number generator (QRNG) based on heterodyne detection of vacuum fluctuations. The scheme follows a source-device-independ…