Experimental simulation of quantum superchannels

Author:

Li HangORCID,Wang Kai,Wei Shijie,Yang FanORCID,Chen Xinyu,Sanders Barry CORCID,Wang Dong-ShengORCID,Long Gui-LuORCID

Abstract

Abstract Simulating quantum physical processes has been one of the major motivations for quantum information science. Quantum channels, which are completely positive and trace preserving processes, are the standard mathematical language to describe quantum evolution, while in recent years quantum superchannels have emerged as the substantial extension. Superchannels capture effects of quantum memory and non-Markovianality more precisely, and have found broad applications in universal models, algorithm, metrology, discrimination tasks, as examples. Here, we report an experimental simulation of qubit superchannels in a nuclear magnetic resonance (NMR) system with high accuracy, based on a recently developed quantum algorithm for superchannel simulation. Our algorithm applies to arbitrary target superchannels, and our experiment shows the high quality of NMR simulators for near-term usage. Our approach can also be adapted to other experimental systems and demonstrates prospects for more applications of superchannels.

Funder

Special Project for Research and Development in Key areas of Guangdong Province

Beijing Nova Program

National Natural Science Foundation of China

Beijing Innovation Center for Future Chip

National Key Research and Development Program of China

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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