Certifiable Randomness from a Single Quantum Device

04/02/2018
by   Zvika Brakerski, et al.
0

We give a protocol for producing certifiable randomness from a single untrusted quantum device that is polynomial-time bounded. The randomness is certified to be statistically close to uniform from the point of view of any computationally unbounded quantum adversary, that may share entanglement with the quantum device. The protocol relies on the existence of post-quantum secure trapdoor claw-free functions, and introduces a new primitive for constraining the power of an untrusted quantum device. We then show how to construct this primitive based on the hardness of the learning with errors (LWE) problem. The randomness protocol can also be used as the basis for an efficiently verifiable quantum supremacy proposal, thus answering an outstanding challenge in the field.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
04/24/2022

Efficient Certifiable Randomness from a Single Quantum Device

Brakerski et. al [BCM+18] introduced the model of cryptographic testing ...
research
03/02/2023

Certified Randomness from Quantum Supremacy

We propose an application for near-term quantum devices: namely, generat...
research
06/05/2021

Quantum Measurement Adversary

Multi-source-extractors are functions that extract uniform randomness fr...
research
10/11/2022

Private Randomness Agreement and its Application in Quantum Key Distribution Networks

We define a variation on the well-known problem of private message trans...
research
08/20/2021

Semi-device-independent full randomness amplification based on energy bounds

Quantum Bell nonlocality allows for the design of protocols that amplify...
research
11/30/2022

Post-Quantum κ-to-1 Trapdoor Claw-free Functions from Extrapolated Dihedral Cosets

Noisy Trapdoor Claw-free functions (NTCF) as powerful post-quantum crypt...
research
10/14/2019

Verifiable Quantum Secure Modulo Summation

We propose a new cryptographic task, which we call verifiable quantum se...

Please sign up or login with your details

Forgot password? Click here to reset