Digital quantum simulation of the statistical mechanics of a frustrated magnet

Jingfu Zhang, Man-Hong Yung, Raymond Laflamme, Alán Aspuru-Guzik, Jonathan Baugh
2012 Nature Communications  
Many interesting problems in physics, chemistry, and computer science are equivalent to problems of interacting spins. However, most of these problems require computational resources that are out of reach by classical computers. A promising solution to overcome this challenge is to exploit the laws of quantum mechanics to perform simulation. Several "analog" quantum simulations of interacting spin systems have been realized experimentally. However, relying on adiabatic techniques, these
more » ... ons are limited to preparing ground states only. Here we report the first experimental results on a "digital" quantum simulation on thermal states; we simulated a three-spin frustrated magnet, a building block of spin ice, with an NMR quantum information processor, and we are able to explore the phase diagram of the system at any simulated temperature and external field. These results serve as a guide for identifying the challenges for performing quantum simulation on physical systems at finite temperatures, and pave the way towards large scale experimental simulations of open quantum systems in condensed matter physics and chemistry.
doi:10.1038/ncomms1860 pmid:22673907 fatcat:lelxtnvgrrdsvopu5mkurgs5da