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Generating Haar-uniform randomness using stochastic quantum walks on a photonic chip

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Title: Generating Haar-uniform randomness using stochastic quantum walks on a photonic chip
Authors: Tang, H
Banchi, L
Wang, T-Y
Shang, X-W
Tan, X
Zhou, W-H
Feng, Z
Pal, A
Li, H
Hu, C-Q
Kim, MS
Jin, X-M
Item Type: Journal Article
Abstract: As random operations for quantum systems are intensively used in various quantum information tasks, a trustworthy measure of the randomness in quantum operations is highly demanded. The Haar measure of randomness is a useful tool with wide applications, such as boson sampling. Recently, a theoretical protocol was proposed to combine quantum control theory and driven stochastic quantum walks to generate Haar-uniform random operations. This opens up a promising route to converting classical randomness to quantum randomness. Here, we implement a two-dimensional stochastic quantum walk on the integrated photonic chip and demonstrate that the average of all distribution profiles converges to the even distribution when the evolution length increases, suggesting the 1-pad Haar-uniform randomness. We further show that our two-dimensional array outperforms the one-dimensional array of the same number of waveguide for the speed of convergence. Our Letter demonstrates a scalable and robust way to generate Haar-uniform randomness that can provide useful building blocks to boost future quantum information techniques.
Issue Date: 4-Feb-2022
Date of Acceptance: 3-Jan-2022
URI: http://hdl.handle.net/10044/1/94944
DOI: 10.1103/PhysRevLett.128.050503
ISSN: 0031-9007
Publisher: American Physical Society
Journal / Book Title: Physical Review Letters
Volume: 128
Issue: 5
Copyright Statement: © 2022 American Physical Society.
Sponsor/Funder: Samsung Electronics Co. Ltd
Engineering & Physical Science Research Council (E
Funder's Grant Number: N/A
EP/T001062/1
Keywords: 01 Mathematical Sciences
02 Physical Sciences
09 Engineering
General Physics
Publication Status: Published
Conference Place: United States
Article Number: ARTN 050503
Online Publication Date: 2022-02-03
Appears in Collections:Quantum Optics and Laser Science
Physics