arXiv · 2502.17286
Scalable quantum circuit simulation of a chaotic Ising chain
Abstract
The recent advancements in out-of-time-ordered correlator (OTOC) measurements have provided a promising pathway to explore quantum chaos and information scrambling. However, despite recent advancements, their experimental realization remains challenging due to the complexity of implementing backward time evolution. Here, we present a scalable quantum circuit combined with the interferometric protocol, offering a more efficient framework for OTOC measurement. Using this method, we simulate commutator growth in integrable and chaotic regimes of a 9-qubit Ising chain. Our Trotterized circuit achieves errors below $10^{-11}$ with 4th-order Trotterization and performs well even with lower-order Trotterization approximations. We believe, this approach paves the way for studying information dynamics, highly entangled quantum systems, and complex observables efficiently.
Explore related subjects
Keep this discovery
Sabyasachi Chakraborty, Rohit Sarma Sarkar, Sonjoy Majumder. 2025-02-24. Scalable quantum circuit simulation of a chaotic Ising chain. https://arxiv.org/abs/2502.17286
Cite the original work for its findings. Save a collection to share your selection of sources.