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quant-ph2025

Certified randomness amplification by dynamically probing remote random quantum states

Minzhao Liu, Pradeep Niroula, Matthew DeCross +49

Cryptography depends on truly unpredictable numbers, but physical sources emit biased or correlated bits. Quantum mechanics enables the amplification of imperfect randomness into n…

quant-ph2025

On the Equivalence between Classical Position Verification and Certified Randomness

Fatih Kaleoglu, Minzhao Liu, Kaushik Chakraborty +4

Gate-based quantum computers hold enormous potential to accelerate classically intractable computational tasks. Random circuit sampling (RCS) is the only known task that has been a…

quant-ph2025

Certified randomness using a trapped-ion quantum processor

Minzhao Liu, Ruslan Shaydulin, Pradeep Niroula +29

While quantum computers have the potential to perform a wide range of practically important tasks beyond the capabilities of classical computers, realizing this potential remains a…

quant-ph2025

Applications of Certified Randomness

Omar Amer, Shouvanik Chakrabarti, Kaushik Chakraborty +8

Certified randomness can be generated with untrusted remote quantum computers using multiple known protocols, one of which has been recently realized experimentally. Unlike the ran…

quant-ph2024

On the Relativistic Zero Knowledge Quantum Proofs of Knowledge

Kaiyan Shi, Kaushik Chakraborty, Wen Yu Kon +3

We initiate the study of relativistic zero-knowledge quantum proof of knowledge systems with classical communication, formally defining a number of useful concepts and constructing…