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arXiv 2014-11-17 DOI 10.1103/PhysRevA.93.012325 0 views

Algorithmic Cooling in Liquid State NMR

Atia, Yosi · Elias, Yuval · Mor, Tal · Weinstein, Yossi

Original · EN

Algorithmic cooling is a method that employs thermalization to increase qubit purification level, namely it reduces the qubit-system's entropy. We utilized gradient ascent pulse engineering (GRAPE), an optimal control algorithm, to implement algorithmic cooling in liquid state nuclear magnetic resonance. Various cooling algorithms were applied onto the three qubits of ¹³C₂-trichloroethylene, cooling the system beyond Shannon's entropy bound in several different ways. In particular, in one experiment a carbon qubit was cooled by a factor of 4.61. This work is a step towards potentially integrating tools of NMR quantum computing into in vivo magnetic resonance spectroscopy.

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