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Feedback-based quantum algorithm inspired by counterdiabatic driving

delete2024-10-25
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OA
AI
R
Rajesh K. Malla *
H
Hiroki Sukeno
H
Hongye Yu
T
Tzu-Chieh Wei
A
Andreas Weichselbaum
R
Robert Konik
DOI:10.1103/PhysRevResearch.6.043068delete
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Abstract

Abstract

En 中文
In recent quantum algorithmic developments, a feedback-based approach has shown promise for preparing quantum many-body system ground states and solving combinatorial optimization problems. This method utilizes quantum Lyapunov control to iteratively construct quantum circuits. Here, we propose a substantial enhancement by implementing a protocol that uses ideas from quantum Lyapunov control and the counterdiabatic driving protocol, a key concept from quantum adiabaticity. Our approach introduces an additional control field inspired by counterdiabatic driving. We apply our algorithm to prepare ground states in one-dimensional quantum Ising spin chains. Comprehensive simulations demonstrate a remarkable acceleration in population transfer to low-energy states within a significantly reduced time frame compared to conventional feedback-based quantum algorithms. This acceleration translates to a reduced quantum circuit depth, a critical metric for potential quantum computer implementation. We validate our algorithm on the IBM cloud computer, highlighting its efficacy in expediting quantum computations for many-body systems and combinatorial optimization problems.
Keywords:
IMPLICIT LYAPUNOV CONTROL
EIGENSOLVER

Journal

Physical Review Research cover
Physical Review Research
IF:
4.2
Papers:
7.6K
Citations:
2.7W

Organization

U
united states department of energy (doe)
Scholars:
11.3W
Papers: 9.6W
Citations: 246
B
Brookhaven National Laboratory
Scholars:
6.4K
Papers: 4.9K
Citations: 1.9W